{"id":181,"date":"2023-06-01T15:38:00","date_gmt":"2023-06-01T13:38:00","guid":{"rendered":"https:\/\/www.institut-foton.eu\/?page_id=181"},"modified":"2026-03-18T11:21:37","modified_gmt":"2026-03-18T10:21:37","slug":"publications","status":"publish","type":"page","link":"https:\/\/www.institut-foton.eu\/en\/recherche\/publications\/","title":{"rendered":"Scientific production"},"content":{"rendered":"\n<p>Retrouvez l\u2019ensemble de nos publications sur <a href=\"https:\/\/hal.science\/FOTON\">HAL<\/a> <\/p>\n\n\n\n<figure class=\"wp-block-image size-full is-resized\"><a href=\"https:\/\/hal.science\/FOTON\"><img loading=\"lazy\" decoding=\"async\" width=\"949\" height=\"349\" src=\"https:\/\/www.institut-foton.eu\/wp-content\/uploads\/2023\/07\/HAL_Logotype_2021-6.png\" alt=\"\" class=\"wp-image-454\" style=\"width:190px;height:70px\"\/><\/a><\/figure>\n\n\n\n<div id=\"wphal-content\"><div id=\"meta\">\n        <div class=\"display\" id=\"wphal-contact\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Contact<\/h3>\n\n            <ul id=\"wphal-cont\" style=\"list-style-type: none\"><\/ul>\n        <\/div>\n        <div class=\"display\" id=\"wphal-disciplines\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Disciplines<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-keywords\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Mots-clefs<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-auteurs\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Auteurs<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-affiliated\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Auteurs de la structure<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-revues\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Revues<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-annees\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Ann\u00e9e de production<\/h3><\/div>\n        <div class=\"display\" id=\"wphal-insts\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Institutions<\/h3><\/div>\n       <div class=\"display\" id=\"wphal-labs\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">Laboratoires<\/h3><\/div>\n       <div class=\"display\" id=\"wphal-depts\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">D\u00e9partements<\/h3><\/div>\n       <div class=\"display\" id=\"wphal-equipes\" style=\"display: none\">\n            <h3 class=\"wphal-titre\">\u00c9quipes de recherche<\/h3><\/div>\n    <div class=\"display\" id=\"publications\"><div class=\"counter-doc\"><span class=\"wphal-nbtot\">3301 <\/span>documents<\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Articles dans une revue<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">1138 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Jin Hou, Jared Fletcher, Siedah Hall, Hao Zhang, Marios Zacharias, et al.. Exciton diffusion beyond 2 \u03bcm enabled by maximum symmetry in two-dimensional perovskites. <i>Nature Synthesis<\/i>, 2026, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1038\/s44160-026-01041-4\">&#x27E8;10.1038\/s44160-026-01041-4&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05581554v1\">&#x27E8;hal-05581554&#x27E9;<\/a><\/li><li>Sergio Hernandez Fernandez, Christophe Peucheret, Francesco da Ros, Darko Zibar. Experimental End-to-End Optimization of Directly Modulated Laser-based IM\/DD Transmission. <i>Journal of Lightwave Technology<\/i>, 2026, 44 (5), pp.1702-1711. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1109\/jlt.2025.3647350\">&#x27E8;10.1109\/jlt.2025.3647350&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05444053v1\">&#x27E8;hal-05444053&#x27E9;<\/a><\/li><li>Gr\u00e9gory Lefr\u00e8re, E. Kaeshammer, A. Lefran\u00e7ois, J.-M. Goujon, L. Poffo, et al.. Shock velocity measurement inside high density polyethylene using mid-infrared photonic Doppler velocimetry. <i>Journal of Laser Applications<\/i>, 2026, 38 (1), <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.2351\/5.0249142\">&#x27E8;10.2351\/5.0249142&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05507452v1\">&#x27E8;hal-05507452&#x27E9;<\/a><\/li><li>Marios Zacharias, George Volonakis, Laurent Pedesseau, Claudine Katan, Feliciano Giustino, et al.. Roadmap for electronic structure, anharmonicity, and electron-phonon calculations in locally disordered inorganic and hybrid halide perovskites. <i>Physical Review B<\/i>, 2026, 113 (8), pp.085118. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/67c2-yzjw\">&#x27E8;10.1103\/67c2-yzjw&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05528302v1\">&#x27E8;hal-05528302&#x27E9;<\/a><\/li><li>Marios Zacharias, George Volonakis, Laurent Pedesseau, Claudine Katan, Feliciano Giustino, et al.. Electron-phonon couplings in polymorphous crystals. <i>Physical Review B<\/i>, 2026, 113 (8), pp.L081104. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/n52n-g9nr\">&#x27E8;10.1103\/n52n-g9nr&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05528292v1\">&#x27E8;hal-05528292&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. All-sky search for long-duration gravitational-wave transients in the first part of the fourth LIGO-Virgo-KAGRA Observing run. <i>Physical Review D<\/i>, 2026, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/83j3-pgk1\">&#x27E8;10.1103\/83j3-pgk1&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05491504v1\">&#x27E8;hal-05491504&#x27E9;<\/a><\/li><li>Jianing Duan, Junke Jiang, Unsoo Kim, Jong Woo Lee, Yingguo Yang, et al.. Structure and Device-Operando Photostability of Quasi-2D Ruddlesden-Popper Perovskites: Engineering the Spacer Cation Matters. <i>ACS Energy Letters<\/i>, 2026, 11 (2), pp.1714-1723. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1021\/acsenergylett.5c03228\">&#x27E8;10.1021\/acsenergylett.5c03228&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05512487v1\">&#x27E8;hal-05512487&#x27E9;<\/a><\/li><li>M. Benamor, J. Gannouni, F. Chaffar Akkari. Glancing angle deposited CuO thin films for sub-ppm ethanol detection: influence of deposition angle and operating temperature. <i>Journal of Materials Science<\/i>, 2026, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1007\/s10853-026-12611-4\">&#x27E8;10.1007\/s10853-026-12611-4&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05578824v1\">&#x27E8;hal-05578824&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Black Hole Spectroscopy and Tests of General Relativity with GW250114. <i>Physical Review Letters<\/i>, 2026, 136 (4), pp.041403. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/6c61-fm1n\">&#x27E8;10.1103\/6c61-fm1n&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05491429v1\">&#x27E8;hal-05491429&#x27E9;<\/a><\/li><li>Sreejith Pallikkara Chandrasekharan, Sofia Apergi, Chen Wei, Federico Panciera, Laurent Travers, et al.. Ab initio modeling of morphology with experimental comparison in a nanoscale heterostructure. <i>Physical Review Materials<\/i>, 2026, 10 (3), pp.L030401. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/5k42-345z\">&#x27E8;10.1103\/5k42-345z&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05587910v1\">&#x27E8;hal-05587910&#x27E9;<\/a><\/li><li>J\u00e9r\u00e9my Potet, Mathilde Gay, Laurent Bramerie, Gael Simon, Fabienne Saliou, et al.. Analytical study of receivers performances for 100 Gbit\/s OOK IM\/DD fiber access link. <i>Optical Fiber Technology<\/i>, 2025, 97, pp.104502. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1016\/j.yofte.2025.104502\">&#x27E8;10.1016\/j.yofte.2025.104502&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05423239v1\">&#x27E8;hal-05423239&#x27E9;<\/a><\/li><li>Daria Gudz, Fran\u00e7oise Binet, Ludovic Frein, Goulc'Hen Loas, Cyril Hamel, et al.. (Sub-)millimeter spectroscopy instrument for the soil metabolite detection. <i>IEEE Sensors Journal<\/i>, 2025, 25 (22), pp.41274-41281. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1109\/jsen.2025.3614491\">&#x27E8;10.1109\/jsen.2025.3614491&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05294637v1\">&#x27E8;hal-05294637&#x27E9;<\/a><\/li><li>M. Benamor, J. Gannouni, F. Chaffar Akkari. Elaboration and characterization of Cu2O thin films via Glancing Angle Deposition for high-performance gas sensing of ethanol and methanol at room temperature. <i>Materials Chemistry and Physics<\/i>, 2025, 349 (part 1), pp.131776. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1016\/j.matchemphys.2025.131776\">&#x27E8;10.1016\/j.matchemphys.2025.131776&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/univ-rennes.hal.science\/hal-05547143v1\">&#x27E8;hal-05547143&#x27E9;<\/a><\/li><li>Yannick Dumeige, Yoan L\u00e9ger. Coupled micro-resonators for second-order integrated nonlinear optics. <i>Optics Letters<\/i>, 2025, 50 (21), pp.6766. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/OL.570911\">&#x27E8;10.1364\/OL.570911&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05389439v1\">&#x27E8;hal-05389439&#x27E9;<\/a><\/li><li>Marios Zacharias, Jacky Even. Local Structural Disorder in Crystalline Materials. <i>ACS Energy Letters<\/i>, 2025, 10, pp.5635-5643. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1021\/acsenergylett.5c02706\">&#x27E8;10.1021\/acsenergylett.5c02706&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05328999v1\">&#x27E8;hal-05328999&#x27E9;<\/a><\/li><li>R. Abbott, H. Abe, F. Acernese, K. Ackley, N. Adhikari, et al.. Tests of General Relativity with GWTC-3. <i>Physical Review D<\/i>, 2025, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/PhysRevD.112.084080\">&#x27E8;10.1103\/PhysRevD.112.084080&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-03862862v1\">&#x27E8;hal-03862862&#x27E9;<\/a><\/li><li>Hanh Vi Le, Rozenn Bernard, Ludovic Largeau, Gilles Patriarche, Sylvain Febvre, et al.. Solar Hydrogen Production with Metal\/III\u2013V Semiconductor Junction Monolithically Integrated on Si. <i>ChemElectroChem<\/i>, 2025, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/celc.202500251\">&#x27E8;10.1002\/celc.202500251&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05334599v1\">&#x27E8;hal-05334599&#x27E9;<\/a><\/li><li>Ethan Diak, Jonas L\u00e4hnemann, Alain Mor\u00e9ac, Jean-Pierre Landesman, Kagiso Loeto, et al.. Optical Response of Ultrathin GaP Nanoantenna with Zincblende-to-Wurtzite Crystal Phase Transitions. <i>Crystal Growth &amp; Design<\/i>, 2025, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1021\/acs.cgd.5c01111\">&#x27E8;10.1021\/acs.cgd.5c01111&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05308354v1\">&#x27E8;hal-05308354&#x27E9;<\/a><\/li><li>S. Meziani, A. Hammouti, L. Bodiou, N. Lorrain, R. Chahal, et al.. Mid-infrared integrated spectroscopic sensor based on chalcogenide glasses: Optical characterization and sensing applications. <i>Advanced Sensor and Energy Materials<\/i>, 2025, 4 (3), pp.100149. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1016\/j.asems.2025.100149\">&#x27E8;10.1016\/j.asems.2025.100149&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05101032v1\">&#x27E8;hal-05101032&#x27E9;<\/a><\/li><li>Mohamed Oussama Bounab, Clarisse Furgeaud, S\u00e9bastien Cueff, Lotfi Berguiga, Romain Bachelet, et al.. Strong and Engineerable Optical Anisotropy in Easily Integrable Epitaxial SrO(SrTiO 3 ) N Ruddlesden\u2013Popper Thin Layers. <i>Advanced Optical Materials<\/i>, 2025, 13 (28), pp.e01049. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/adom.202501049\">&#x27E8;10.1002\/adom.202501049&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05222240v1\">&#x27E8;hal-05222240&#x27E9;<\/a><\/li><li>Yuxuan Wang, Marios Zacharias, Xiao Zhang, Nick Pant, Jacky Even, et al.. Efficient First-Principles Framework for Overdamped Phonon Dynamics and Anharmonic Electron-Phonon Coupling in Superionic Materials. <i>Physical Review Letters<\/i>, 2025, 135 (5), pp.056402. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/kgw3-cxx8\">&#x27E8;10.1103\/kgw3-cxx8&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05219081v1\">&#x27E8;hal-05219081&#x27E9;<\/a><\/li><li>Antoine Lemoine, Brieg Le Corre, Lise Morice, Abdelmouna\u00efm Harouri, Luc Le Gratiet, et al.. High efficiency second harmonic generation in transverse orientation patterned gallium phosphide waveguides. <i>Optics Express<\/i>, 2025, 33 (14), pp.29239. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/OE.557556\">&#x27E8;10.1364\/OE.557556&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05223377v2\">&#x27E8;hal-05223377v2&#x27E9;<\/a><\/li><li>Lipin Chen, Laurent Pedesseau, Jinshi Zhao, Charles Cornet. Transport anisotropy in semimetallic and stoichiometric wurtzite inversion domain boundaries. <i>Physical Review B<\/i>, 2025, 111 (24), pp.245302. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1103\/2slj-bpzx\">&#x27E8;10.1103\/2slj-bpzx&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05167040v1\">&#x27E8;hal-05167040&#x27E9;<\/a><\/li><li>Taylor E. Wiggins, Abdulaziz S. R. Bati, Mika\u00ebl Kepenekian, Robert P. Reynolds, Stefan Zeiske, et al.. Pb:Sn Ratio-Driven Polytypism and Band Modulation in Photoresponsive Hexagonal Perovskitoids. <i>Journal of the American Chemical Society<\/i>, 2025, 147 (24), pp.21014-21031. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1021\/jacs.5c05714\">&#x27E8;10.1021\/jacs.5c05714&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05155901v1\">&#x27E8;hal-05155901&#x27E9;<\/a><\/li><li>Simon Boehme, Tan Nguyen, Chenglian Zhu, Ihor Cherniukh, Leon Feld, et al.. Single-photon superabsorption in CsPbBr3 perovskite quantum dots. <i>Nature Photonics<\/i>, 2025, 19 (8), pp.864. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1038\/s41566-025-01684-3\">&#x27E8;10.1038\/s41566-025-01684-3&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05078702v1\">&#x27E8;hal-05078702&#x27E9;<\/a><\/li><li>G. Dande, J. Pennanech, C. Charliac, V. Kemlin, V. Crozatier, et al.. Narrow linewidth III-V-on-SiN laser with extended frequency chirp capability based on micro-transfer printing for high resolution distributed acoustic sensing. <i>Optics Express<\/i>, 2025, 33 (8), pp.17192-17202. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/OE.529238\">&#x27E8;10.1364\/OE.529238&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05105369v1\">&#x27E8;hal-05105369&#x27E9;<\/a><\/li><li>Sofiane Meziani, Abdelali Hammouti, Abdallah Jaafar, Lo\u00efc Bodiou, Nathalie Lorrain, et al.. Liquid and gas mid-infrared integrated spectroscopic sensor. <i>Optics Express<\/i>, 2025, 33 (8), pp.17002. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/OE.553730\">&#x27E8;10.1364\/OE.553730&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05101043v1\">&#x27E8;hal-05101043&#x27E9;<\/a><\/li><li>Dylan Chevalier, Pascal Scalart, Ga\u00ebl Simon, J\u00e9r\u00e9my Potet, Laurent Bramerie, et al.. Analog feedforward equalizer optimization in the context of 50G-PON. <i>Journal of Optical Communications and Networking<\/i>, 2025, 17 (5), pp.401. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/JOCN.551393\">&#x27E8;10.1364\/JOCN.551393&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/univ-rennes.hal.science\/hal-05042324v1\">&#x27E8;hal-05042324&#x27E9;<\/a><\/li><li>Abhishek Sureshkumar, Jonathan Demaimay, Georges Perin, Shahaz Hameed, M. Guendouz, et al.. Yellow stimulated emission from Dy 3+ -doped silica glass microspheres. <i>Optics Express<\/i>, 2025, 33 (7), pp.15802. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/OE.553978\">&#x27E8;10.1364\/OE.553978&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05061205v1\">&#x27E8;hal-05061205&#x27E9;<\/a><\/li><li>Fabienne Saliou, Philippe Chanclou, Ga\u00ebl Simon, J\u00e9r\u00e9my Potet, Georges Gaillard, et al.. Optical access networks to support future 5G and 6G mobile networks [Invited]. <i>Journal of Optical Communications and Networking<\/i>, 2025, 17 (7), pp.C22. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1364\/JOCN.551629\">&#x27E8;10.1364\/JOCN.551629&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05405710v1\">&#x27E8;hal-05405710&#x27E9;<\/a><\/li><li>C. Delle Donne, M. Iuliano, B. van der Vecht, G. Ferreira, H. Jirovsk\u00e1, et al.. An operating system for executing applications on quantum network nodes. <i>Nature<\/i>, 2025, 639 (8054), pp.321-328. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1038\/s41586-025-08704-w\">&#x27E8;10.1038\/s41586-025-08704-w&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05363746v1\">&#x27E8;hal-05363746&#x27E9;<\/a><\/li><li>Lien Smeesters, Francesca Venturini, Stefan Paulus, Anne-Katrin Mahlein, David Perpetuini, et al.. 2025 photonics for agrifood roadmap: towards a sustainable and healthier planet. <i>Journal of Physics: Photonics<\/i>, 2025, 7 (3), pp.032501. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1088\/2515-7647\/adbea9\">&#x27E8;10.1088\/2515-7647\/adbea9&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04987546v1\">&#x27E8;hal-04987546&#x27E9;<\/a><\/li><li>Isaiah Gilley, Hyoung Woo Kwon, Cheng Liu, Yi Yang, Chuying Huang, et al.. Combining organic cations of different sizes grants improved control over perovskitoid dimensionality and bandgap. <i>Journal of the American Chemical Society<\/i>, 2025, 147 (9), pp.7777-7787. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1021\/jacs.4c17654\">&#x27E8;10.1021\/jacs.4c17654&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04972290v1\">&#x27E8;hal-04972290&#x27E9;<\/a><\/li><li>Junke Jiang, Tammo van der Heide, Simon Th\u00e9baud, Carlos Ra\u00fal Lien-Medrano, Arnaud Fihey, et al.. 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Strat\u00e9gies de r\u00e9alisation de guides polym\u00e8res pour la modulation \u00e9lectro-optique \u00e0 haut d\u00e9bit. <i>32\u00e8 Journ\u00e9es Nationales d'Optique Guid\u00e9e (JNOG 2013)<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00860946v1\">&#x27E8;hal-00860946&#x27E9;<\/a><\/li><li>Jo\u00ebl Charrier, Adel Najar, Parastesh Pirasteh. Propri\u00e9t\u00e9s optiques et physiques des couches de nanofils de silicium poreux pour des applications photovolta\u00efques. <i>Optique 2013 \/ Horizons de l'optique - Club Nanophotonique<\/i>, Jul 2013, Paris, France. pp.143. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00939120v1\">&#x27E8;hal-00939120&#x27E9;<\/a><\/li><li>Laurent Provino, Achille Monteville, Cl\u00e9ment Romano, Alain Mugnier, Christelle Pareige, et al.. Conception et r\u00e9alisation d'une fibre \u00e0 large c\u0153ur microstructur\u00e9e polarisante adapt\u00e9e \u00e0 la transmission \u00e0 1 \u00b5m. <i>32\u00e8 Journ\u00e9es Nationales d'Optique Guid\u00e9e (JNOG 2013)<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01151489v1\">&#x27E8;hal-01151489&#x27E9;<\/a><\/li><li>Dominique Bosc, Hind Mah\u00e9, Jonathan Lemaitre, Isabelle Hardy, Luiz Poffo. Analyse des pertes optiques dans les guides polym\u00e8res. <i>32\u00e8 Journ\u00e9es Nationales d'Optique Guid\u00e9e (JNOG 2013)<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00860960v1\">&#x27E8;hal-00860960&#x27E9;<\/a><\/li><li>Christiane Carr\u00e9, Aur\u00e9lie Chan Yong, Fran\u00e7oise Peresse, Ahmad Ibrahim, Christian Ley, et al.. Optimisation de nouveaux syst\u00e8mes photoamorceurs de polym\u00e9risation pour le stockage d'informations par holographie. <i>Colloque \"Optique 2013 - Horizons de l'Optique\"<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00920079v1\">&#x27E8;hal-00920079&#x27E9;<\/a><\/li><li>Mohamed Hiraoui, Mohammed Guendouz, Nathalie Lorrain, Lazhar Haji. Interf\u00e9rom\u00e8tre de type Mach-Zehnder en silicium poreux : application aux biocapteurs. <i>32\u00e8 Journ\u00e9es Nationales d'Optique Guid\u00e9e (JNOG 2013)<\/i>, Jul 2013, Villetanneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00862259v1\">&#x27E8;hal-00862259&#x27E9;<\/a><\/li><li>Christiane Carre, Aur\u00e9lie Chan Yong, Kevin Heggarty, Guillaume Vignaud, Isabelle Pillin. Microstructuration de mat\u00e9riaux polym\u00e8res pour la fabrication de composants optiques diffractifs. <i>Colloque \"Optique 2013 - Horizons de l'Optique\"<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00920101v1\">&#x27E8;hal-00920101&#x27E9;<\/a><\/li><li>Fr\u00e9d\u00e9ric Grillot, Cheng Wang, Jacky Even, Joshua Bodyfelt, M. Carras, et al.. Photonique nonlin\u00e9aire dans les lasers \u00e0 cascade quantique. <i>Journ\u00e9es Nationales d'Optique Guid\u00e9e (JNOG)<\/i>, Jul 2013, Villetaneuse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01018086v1\">&#x27E8;hal-01018086&#x27E9;<\/a><\/li><li>Charles Cornet, Tony Rohel, Olivier Dehaese, Nicolas Chevalier, Antoine L\u00e9toublon, et al.. D\u00e9veloppement d'un cluster de croissance UHVCVD-MBE pour l'int\u00e9gration pseudomorphique III-V\/Si. <i>R\u00e9union pl\u00e9ni\u00e8re du GDR Pulse (PULSE 2013)<\/i>, Jul 2013, Aix-en-Provence, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918749v1\">&#x27E8;hal-00918749&#x27E9;<\/a><\/li><li>Julien Stodolna, Fran\u00e7ois Demangeot, Anne Ponchet, Nicolas Bertru, Olivier Durand, et al.. Etude par TEM et DRX des d\u00e9fauts cristallins dans des couches \u00e9pitaxi\u00e9es par MBE de GaP sur Silicium (001). <i>R\u00e9union pl\u00e9ni\u00e8re du GDR Pulse (PULSE 2013)<\/i>, Jul 2013, Aix-en-Provence, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918748v1\">&#x27E8;hal-00918748&#x27E9;<\/a><\/li><li>Julien Cardin, Alexandre Fafin, Chuan-Hui Liang, Christian Dufour, Olivier Debieu, et al.. Nanostructured silicon and rare earth based gain media for compact infra-red light source: experimental and theoretical investigations. <i>7th International Conference on Materials for Advanced Technologies (ICMAT 2013)<\/i>, Jun 2013, Suntec, Singapore. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01141522v1\">&#x27E8;hal-01141522&#x27E9;<\/a><\/li><li>Khaldoun Saleh, Aur\u00e9lien Coillet, Vincent Huet, Amel Ali Slimane, R\u00e9my Henriet, et al.. R\u00e9sonateurs optiques \u00e0 tr\u00e8s fort Q et applications Projets ANR-ORA et CNES-SHYRO. <i>Journ\u00e9e du Club Optique Micro-onde (JCOM 2013)<\/i>, Jun 2013, Paris, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00849711v1\">&#x27E8;hal-00849711&#x27E9;<\/a><\/li><li>Charles Cornet, C\u00e9dric Robert Robert, Samy Almosni, Thanh Tra Nguyen, Thomas Quinci, et al.. GaAsPN compounds for Si photonics. <i>International Workshop \"Silicon &amp; Photonics\"<\/i>, Jun 2013, Rennes, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918743v1\">&#x27E8;hal-00918743&#x27E9;<\/a><\/li><li>Anne Ponchet, Julien Stodolna, Charles Cornet, Antoine L\u00e9toublon, Thanh Tra Nguyen, et al.. Origin and observations of extended defects in III-V epilayers on Si. <i>International Workshop \"Silicon &amp; Photonics\"<\/i>, Jun 2013, Rennes, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918738v1\">&#x27E8;hal-00918738&#x27E9;<\/a><\/li><li>C\u00e9dric Robert Robert, M. Nestoklon, Charles Cornet, Olivier Durand, Jacky Even, et al.. Tight binding simulations in III-V structures on Si. <i>International Workshop \"Silicon &amp; Photonics\"<\/i>, Jun 2013, Rennes, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918742v1\">&#x27E8;hal-00918742&#x27E9;<\/a><\/li><li>Virginie Nazabal, Jean-Louis Doualan, Radwan Chahal, Fr\u00e9d\u00e9ric Charpentier, Patrice Camy, et al.. Rare earth doped chalcogenide optical waveguide. <i>10th Pacific Rim Conference on Ceramic and Glass Technology<\/i>, Jun 2013, San Diego, United States. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00846748v1\">&#x27E8;hal-00846748&#x27E9;<\/a><\/li><li>Fethallah Taleb, Christophe Levallois, Cyril Parantho\u00ebn, Jean-Philippe Gauthier, Nicolas Chevalier, et al.. 1.55 \u03bcm VCSEL based on InAs quantum-dashes with an emission covering 105 nm wavelength range. <i>Euro VCSEL-DAY 2013<\/i>, May 2013, Lausanne, Switzerland. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00920834v1\">&#x27E8;hal-00920834&#x27E9;<\/a><\/li><li>Ramzi Benchamekh, Nikolay A. Gippius, Jacky Even, Mikhail O. Nestoklon, Jean-Marc Jancu, et al.. Self-energy driven exciton binding energy in II-VI semiconductor nanoplatelets. <i>14th International Conference on Physics of Light-Matter Coupling in Nanostructure (PLMCN 2013)<\/i>, May 2013, Hersonissos, Greece. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01018070v1\">&#x27E8;hal-01018070&#x27E9;<\/a><\/li><li>Eric Tea, Charles Cornet, Antoine L\u00e9toublon, J. Vidal, Laurent Pedesseau, et al.. Ab initio investigation of defect nucleation at III-V\/Si heterointerface for tandem solar cells applications. <i>European Materials Research Society meeting E-MRS 2013<\/i>, May 2013, Strasbourg, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918729v1\">&#x27E8;hal-00918729&#x27E9;<\/a><\/li><li>Pierre R\u00e2le, Samy Almosni, Charles Cornet, L. Lombez, Sana Laribi, et al.. Toward a III-V\/Si tandem solar cell : characterization and modeling. <i>European materials research Society meeting E-MRS 2013<\/i>, May 2013, Strasbourg, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918728v1\">&#x27E8;hal-00918728&#x27E9;<\/a><\/li><li>C\u00e9dric Robert Robert, Charles Cornet, Olivier Durand, K. Pereira da Silva, Pascal Turban, et al.. gamma-X competition for the optical transition of (In,Ga)As(N)\/GaP quantum dots (QDs). <i>European Materials research society meeting EMRS 2013<\/i>, May 2013, Strasbourg, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918730v1\">&#x27E8;hal-00918730&#x27E9;<\/a><\/li><li>Chahira Hajlaoui, Laurent Pedesseau, Alain Rolland, Abdallah Sakri, Soline Boyer-Richard, et al.. ab initio modeling of InAs\/InP valence band offset. <i>GDR CoDFT 2013<\/i>, May 2013, Lorient, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01018210v1\">&#x27E8;hal-01018210&#x27E9;<\/a><\/li><li>Samy Almosni, Charles Cornet, Thomas Quinci, Thanh Tra Nguyen, Jithesh Kuyyalil, et al.. UHVCVD-MBE growth for tandem solar cells. <i>4th PhotoVoltaic Technical Conference (PVTC 2013)<\/i>, May 2013, Aix-en-Provence, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918732v1\">&#x27E8;hal-00918732&#x27E9;<\/a><\/li><li>Charles Cornet, C\u00e9dric Robert Robert, Thanh Tra Nguyen, Yanping Wang, Samy Almosni, et al.. Int\u00e9gration optique par croissance directe de nanostructures III-V sur silicium. <i>14\u00e8mes Journ\u00e9es Nano, Micro et Opto\u00e9lectronique (JNMO)<\/i>, May 2013, Evian, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918745v1\">&#x27E8;hal-00918745&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Jean-Marc Jancu, C\u00e9dric Robert Robert, Olivier Durand, et al.. Raccordements de bandes et profils de constantes di\u00e9lectriques pour des h\u00e9t\u00e9rostructures 2D \u00e0 semiconducteurs. <i>GDR co-DFT<\/i>, May 2013, guidel, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00827732v1\">&#x27E8;hal-00827732&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Poster de conf\u00e9rence<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">205 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Eliott Haddad, Cyril Paranthoen, Mathieu Perrin, Mehdi Alouini. Towards compact low noise semiconductor lasers driven by intracavity nonlinearities. <i>Journ\u00e9es scientifiques du PEPR Electronique 2026<\/i>, Mar 2026, Lyon, France. <a target=\"_blank\" href=\"https:\/\/www.pepr-electronique.fr\/\"><\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05570129v1\">&#x27E8;hal-05570129&#x27E9;<\/a><\/li><li>Thomas Perriguey, Marco Romanelli, Hugues Guillet de Chatellus, Quentin Wilmart, Mehdi Alouini. Coherent characterization of an integrated ring resonator based on an acousto-optic frequency-shifting loop. <i>Journ\u00e9es scientifiques du PEPR Electronique 2026<\/i>, Mar 2026, Lyon, France. <a target=\"_blank\" href=\"https:\/\/www.pepr-electronique.fr\/\"><\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05565867v1\">&#x27E8;hal-05565867&#x27E9;<\/a><\/li><li>Benjamin Gac, Jean-Marc Goujon, Pascal Besnard, Ronan Le Page, Luiz Poffo, et al.. Active and Passive Chlorophyll Fluorescence Sensing to Access Photosynthetic Traits. <i>European Plant Phenomics Symposium (EPPS)<\/i>, Sep 2025, Bonn, Germany. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05295443v1\">&#x27E8;hal-05295443&#x27E9;<\/a><\/li><li>Sofia Apergi, Sreejith Pallikkara Chandrasekharan, Charles Cornet, Laurent Pedesseau. Surface termination effects in GaP photoelectrodes for water splitting: Insights from first principles. <i>Psi-k<\/i>, Aug 2025, Lausane, Switzerland. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05230209v1\">&#x27E8;hal-05230209&#x27E9;<\/a><\/li><li>Elisa Jarry, Pierre Brochard, Marc Vallet, Mehdi Alouini. Stability and referencing of the SNPO onto a ULE cavity. <i>Journ\u00e9es du Club Optique Micro-ondes<\/i>, Jun 2025, Toulouse, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05553866v1\">&#x27E8;hal-05553866&#x27E9;<\/a><\/li><li>Thomas Perriguey, Hugues Guillet de Chatellus, Goulc'Hen Loas, Quentin Wilmart, Marc Vallet, et al.. Caract\u00e9risation par peigne de fr\u00e9quences d'un r\u00e9sonateur en anneau int\u00e9gr\u00e9. <i>JCOM 2025 - Journ\u00e9e du Club Optique Micro-ondes<\/i>, Jun 2025, Toulouse, France. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05318352v2\">&#x27E8;hal-05318352v2&#x27E9;<\/a><\/li><li>Thiviya Parthipan, Cyril Paranthoen, Mathieu Perrin, Virginie Nazabal, Albane Benardais, et al.. Comparing resistivity measurement approaches for Ge2Sb2Te5 thin films. <i>4\u00e8me Journ\u00e9es Scientifiques du GDR Chalco<\/i>, Jun 2025, Montpellier, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05421693v1\">&#x27E8;hal-05421693&#x27E9;<\/a><\/li><li>Xu Zeli, Simon Th\u00e9baud, Antoine L\u00e9toublon, Olivier Durand, Marios Zacharias, et al.. Neutron scattering experiment and simulation in halide perovskite CsPbBr3. <i>EMRS Spring 2025<\/i>, May 2025, Strasbourg, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05219422v1\">&#x27E8;hal-05219422&#x27E9;<\/a><\/li><li>Cyrille Laulier, Sylvain Pernon, Jordan Gastebois, Mohamad Ghandour, Nathalie Coulon, et al.. Participation au Concours \"C G\u00e9nial\" : Fabrication de fibres optiques sur mat\u00e9riaux biosourc\u00e9s (par le coll\u00e8ge des Fontaines de La Guerche de Bretagne). <i>Journ\u00e9e Concours \"C G\u00e9nial\"<\/i>, Mar 2025, Rennes, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05000107v1\">&#x27E8;hal-05000107&#x27E9;<\/a><\/li><li>Thomas Perriguey, Quentin Wilmart, Marc Vallet, Mehdi Alouini, Marco Romanelli. Opto-RF characterization of an integrated ring resonator for the development of optoelectronic oscillators. <i>Journ\u00e9es scientifiques du PEPR Electronique 2025<\/i>, Mar 2025, Paris, France. <a target=\"_blank\" href=\"https:\/\/www.pepr-electronique.fr\/journees-scientifiques-du-pepr-electronique-2025\/#:~:text=Les%20journ%C3%A9es%20scientifiques%202025%20du,du%20congr%C3%A8s%20C'nano%202025.\"><\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05010865v1\">&#x27E8;hal-05010865&#x27E9;<\/a><\/li><li>Wijden Khelifi, Audrey Gilbert, S. Pallikkara Chandrasekharan, A. Lemoine, R. Piron, et al.. PhysIcAl properties of hybrid semimetal\/semicoNductor III-V\/Si maTerials. <i>C\u2019Nano annual congress<\/i>, Mar 2025, Paris, France. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05205427v1\">&#x27E8;hal-05205427&#x27E9;<\/a><\/li><li>B. Boulingui-Koumba, H. V. Le, L. Chen, M. Piriyev, L. Santinacci, et al.. Electro-optical properties of III-V\/Si photocathodes. <i>PEPR H2 days<\/i>, Mar 2025, Nantes, France. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05205430v1\">&#x27E8;hal-05205430&#x27E9;<\/a><\/li><li>Virginia Oddi, Chengliang Zhu, Michael Becker, Yesim Sahin, Dmitry Dirin, et al.. Polarimetric measurements of the bright triplet emission of single cesium lead halide perovskite quantum dots. <i>QD 2024<\/i>, Mar 2025, Munich (Allemagne), Germany. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04972684v1\">&#x27E8;hal-04972684&#x27E9;<\/a><\/li><li>Z. Anfar, F. Merhi, B. Boulingui-Koumba, S. Ram Murugesan, D. Elli, et al.. Robust, cost effective aNd AUTonomous PhotoelectrochemIcaL cells with III-V thin films on Si for practical hydrogen prodUction. <i>PEPR H2 days<\/i>, Mar 2025, Nantes, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05205429v1\">&#x27E8;hal-05205429&#x27E9;<\/a><\/li><li>Rozenn Bernard, Michel Ramonda, Audrey Gilbert, Tony Rohel, Julie Le Pouliquen, et al.. Etude des propri\u00e9t\u00e9s de transport des parois d\u2019antiphase dans les semiconducteurs III-V\/Si par les techniques C-AFM et KPFM.. <i>GDR MatEpi<\/i>, 2025, Lille, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05296596v1\">&#x27E8;hal-05296596&#x27E9;<\/a><\/li><li>Rozenn Bernard, Michel Ramonda, Audrey Gilbert, Tony Rohel, Julie Le Pouliquen, et al.. Study of physical properties of antiphase boundaries in III-V epitaxial layer on silicon with conductive tip atomic force microscopy (C-AFM) and with Kelvin Probe Force Microscopy (KPFM) techniques.. <i>C'NANO<\/i>, 2025, Paris, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05296571v1\">&#x27E8;hal-05296571&#x27E9;<\/a><\/li><li>Hanh Le Vi, Sylvain Febvre, Gabriel Loget, Bruno Fabre, Sylvie Harel, et al.. Large onset potential improvement with an epitaxial GaAs\/Si photocathode for solar H2 production.. <i>23rd International Conference on Molecular-Beam Epitaxy (ICMBE 2024).<\/i>, Sep 2024, Matsue, Japan. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745320v1\">&#x27E8;hal-04745320&#x27E9;<\/a><\/li><li>Bienvenu Boulingui Koumba, Fatima Mehri, Antoine L\u00e9toublon, Paul Huillery, Bruno Fabre, et al.. InP-based Materials on Si for Energy and Photonic Applications. <i>23rd International Conference on Molecular-Beam Epitaxy (ICMBE 2024).<\/i>, Sep 2024, Matsue, Japan. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745313v1\">&#x27E8;hal-04745313&#x27E9;<\/a><\/li><li>Sreejith Pallikkara Chandrasekharan, Fauzia Jabeen, Charles Cornet, Laurent Pedesseau. Atomic scale description of III-V\/Si (001) heteroepitaxial crystals. <i>23rd International Conference on Molecular-Beam Epitaxy (ICMBE 2024)<\/i>, Sep 2024, Matsue, Japan. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745307v1\">&#x27E8;hal-04745307&#x27E9;<\/a><\/li><li>\u00c9ric Gautron, Eug\u00e8ne Bertin, Ludovic Arzel, Leo Choubrac, Antoine L\u00e9toublon, et al.. Microstructure characterization of CIGS\/GaP\/Si tandem solar cells. <i>European Microscopy Congress (EMC) 2024<\/i>, Aug 2024, Copenhagen, Denmark. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745370v1\">&#x27E8;hal-04745370&#x27E9;<\/a><\/li><li>Antoine Lemoine, Lise Morice, Brieg Le Corre, Antoine L\u00e9toublon, Alex Na\u00efm, et al.. Fabrication and characterization of zinc sulfide nanowaveguides for 2nd-order nonlinear photonics. <i>36th International Confererence on the Physics of Semiconductors 2024<\/i>, Jul 2024, Ottawa, Canada. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745344v1\">&#x27E8;hal-04745344&#x27E9;<\/a><\/li><li>Sreejith Pallikkara Chandrasekharan, Divishth Gutpa, Charles Cornet, Laurent Pedesseau. Heteroepitaxial growth of III-V on Si: a DFT perspective. <i>36th International Confererence on the Physics of Semiconductors 2024.<\/i>, Jul 2024, Ottawa, Canada. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745324v1\">&#x27E8;hal-04745324&#x27E9;<\/a><\/li><li>Daria Gudz, Fran\u00e7oise Binet, Val\u00e9rie Gouesbet, Ludovic Frein, Cyril Hamel, et al.. Terahertz absorption spectroscopy instrument for the detection of VOCs emitted by soil microorganisms. <i>OPTIQUE Normandie 2024<\/i>, Jul 2024, Rouen (France), France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04674524v1\">&#x27E8;hal-04674524&#x27E9;<\/a><\/li><li>Gaedze Kudjo Herman Akagla, Goulc'Hen Loas, Anthony Carr\u00e9, Ludovic Frein, Steve Bouhier, et al.. \u00c9mission de deux peignes de fr\u00e9quences, synchrones, ou asynchrones, par un laser Yb:YAG. <i>OPTIQUE Normandie 2024<\/i>, Jul 2024, ROUEN, France. <a target=\"_blank\" href=\"https:\/\/www.sfoptique.org\/pages\/sfo\/congres-optique\/optique-normandie-2024\/\"><\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04645549v1\">&#x27E8;hal-04645549&#x27E9;<\/a><\/li><li>Gaedze Kudjo Herman Akagla, Pavel Loiko, Goulc'Hen Loas, A. Benayad, Patrice Camy, et al.. Lasers ytterbium bipolarisations : r\u00f4le de la direction de polarisation de l'onde de pompe. <i>OPTIQUE Normandie 2024<\/i>, Jul 2024, ROUEN, France. <a target=\"_blank\" href=\"https:\/\/www.sfoptique.org\/pages\/sfo\/congres-optique\/optique-normandie-2024\/\"><\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04648504v1\">&#x27E8;hal-04648504&#x27E9;<\/a><\/li><li>Sreejith Pallikkara Chandrasekharan, Divishth Gutpa, C. Cornet, Laurent Pedesseau. Impact of initial surface passivation on wetting properties analysis during III-V\/Si epitaxy. <i>E-MRS 2024 Spring meeting<\/i>, May 2024, Strasbourg, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04597986v1\">&#x27E8;hal-04597986&#x27E9;<\/a><\/li><li>Yoan L\u00e9ger, Christian Grillet, Vincent Reboud, Quentin Wilmart. R\u00e9sultats marquants 2023 - Projet cibl\u00e9 OFCOC: Optical Frequency Combs On a Chip. <i>Journ\u00e9es Scientifiques Nationales 2024 du PEPR \u00e9lectronique<\/i>, Mar 2024, Grenoble, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04696982v1\">&#x27E8;hal-04696982&#x27E9;<\/a><\/li><li>Bienvenu Boulingui Koumba, Hanh Le Vi, Lipin Chen, Mekan Piriyev, Bruno Fabre, et al.. Cost-efficient III-V\/Si photo-electrodes for hydrogen production. <i>PEPR H2 days<\/i>, Mar 2024, Grenoble, France. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745403v1\">&#x27E8;hal-04745403&#x27E9;<\/a><\/li><li>Sylvie Harel, Kenneth Steirer, Angus Rockett, Hanh Le Vi, Mekan Piriyev, et al.. 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Massive Onset Potential Shifting with an Epitaxial GaAs\/Si Photocathode for Solar H2 Production. <i>245th ECS (The Electrochemical Society) meeting<\/i>, <i>ECS Meeting Abstracts<\/i>, MA2024-01 (44), pp.2458-2458, 2024, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1149\/MA2024-01442458mtgabs\">&#x27E8;10.1149\/MA2024-01442458mtgabs&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04745122v1\">&#x27E8;hal-04745122&#x27E9;<\/a><\/li><li>Nicolas Barreau, L\u00e9o Choubrac, Fabien Pineau, Thamer Aloui, Eug\u00e8ne Bertin, et al.. Full Chalcopyrite Tandem Devices: Can we Hope?. <i>2024 IEEE 52nd Photovoltaic Specialist Conference (PVSC)<\/i>, Jun 2024, Seattle, France. IEEE, pp.0806-0810, 2024, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1109\/PVSC57443.2024.10749669\">&#x27E8;10.1109\/PVSC57443.2024.10749669&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05071334v1\">&#x27E8;hal-05071334&#x27E9;<\/a><\/li><li>J. Guise, H. Ratovo, M. Thual, J. Hesler, T. Reck, et al.. 0.75\u20131.1-THz Waveguide-Integrated Amplitude Modulator based on InAs photo-excitation. <i>2023 48th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz)<\/i>, Sep 2023, Montreal, Canada. IEEE, pp.1-2, 2023, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1109\/IRMMW-THz57677.2023.10299360\">&#x27E8;10.1109\/IRMMW-THz57677.2023.10299360&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.umontpellier.fr\/hal-04282977v1\">&#x27E8;hal-04282977&#x27E9;<\/a><\/li><li>J. Guise, H. Ratovo, S. Blin, L. Cerutti, J.-B. Rodriguez, et al.. Waveguide-integrated optically-controlled THz modulator. <i>47th International Conference on Infrared, Millimeter and Terahertz Waves, IRMMW-THz 2022<\/i>, Aug 2022, Delft, Netherlands. IEEE, pp.1-2, 2022, International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz, 978-172819427-1. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1109\/IRMMW-THz50927.2022.9895784\">&#x27E8;10.1109\/IRMMW-THz50927.2022.9895784&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04229373v1\">&#x27E8;hal-04229373&#x27E9;<\/a><\/li><li>Lo\u00efc Bodiou, Pramitha Kamath, Jean-Claude Simon, Monique Thual, Julie Stervinou, et al.. Development of a SiON-based integrated platform for the blue\/near-UV wavelength range. <i>Proceedings of SPIE, the International Society for Optical Engineering<\/i>, 12148, SPIE; SPIE, pp.7, 2022, Integrated Photonics Platforms II (SPIE Photonics Europe 2022), <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1117\/12.2621759\">&#x27E8;10.1117\/12.2621759&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/univ-rennes.hal.science\/hal-03964863v1\">&#x27E8;hal-03964863&#x27E9;<\/a><\/li><li>Olivier Durand, Eug\u00e8ne Bertin, Nicolas Barreau, Eric Gautron, Antoine L\u00e9toublon, et al.. Towards high-efficiency and low-cost epitaxial CIGSu\/Si tandem solar cells. <i>Proceedings of SPIE, the International Society for Optical Engineering<\/i>, PC12002, SPIE, pp.PC120020Q, 2022, Oxide-based Materials and Devices XIII, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1117\/12.2619151\">&#x27E8;10.1117\/12.2619151&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-03967808v1\">&#x27E8;hal-03967808&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Ouvrages (y compris \u00e9dition critique et traduction)<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">3 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Charles Cornet, Yoan L\u00e9ger, C\u00e9dric Robert. Integrated Lasers on Silicon. ISTE Press - Elsevier, 2016, 9781785480621. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1016\/C2015-0-01237-0\">&#x27E8;10.1016\/C2015-0-01237-0&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01396646v1\">&#x27E8;hal-01396646&#x27E9;<\/a><\/li><li>Yann Boucher, Safa Kasap, Harry Ruda. Cambridge Illustrated Handbook of Optoelectronics and Photonics. Cambridge University Press. <a target=\"_blank\" href=\"http:\/\/www.cambridge.org\/uk\/catalogue\/catalogue.asp?isbn=9780521815963\"><\/a>, 2009, 9780521815963. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01136623v1\">&#x27E8;hal-01136623&#x27E9;<\/a><\/li><li>Dominique Bosc, Monique Thual (Dir.). Special Issue: Fiber Optic Research in France (Part I of III). Taylor &amp; Francis, pp.406, 2008, Fiber and Integrated Optics (ISSN 0146-8030). <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1080\/01468030802545376\">&#x27E8;10.1080\/01468030802545376&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00866154v1\">&#x27E8;hal-00866154&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Chapitres d'ouvrage<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">18 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Aymeric Le Gratiet, Colin J. R. Sheppard, Alberto Diaspro. Biological Imaging Through Optical Mueller Matrix Scanning Microscopy. Springer Nature. <i>Biological and medical physics series<\/i>, pp.101-123, 2023, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-31852-8_5\">&#x27E8;10.1007\/978-3-031-31852-8_5&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04505905v1\">&#x27E8;hal-04505905&#x27E9;<\/a><\/li><li>K. U. Spandana, Sindhoora Kaniyala Melanthota, Gagan Raju, Aymeric Le Gratiet, Nirmal Mazumder. Polarization Microscopy in Biomedical Applications. <i>Optical Polarimetric Modalities for Biomedical Research<\/i>, pp.389-423, 2023, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-031-31852-8_13\">&#x27E8;10.1007\/978-3-031-31852-8_13&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04434445v1\">&#x27E8;hal-04434445&#x27E9;<\/a><\/li><li>Thierry Chartier. Optical Fibers. <i>Springer Handbook of Glass<\/i>, pp.1405-1439, 2019, 978-3-319-93726-7. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1007\/978-3-319-93728-1_41\">&#x27E8;10.1007\/978-3-319-93728-1_41&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02923625v1\">&#x27E8;hal-02923625&#x27E9;<\/a><\/li><li>Jacky Even, Claudine Katan. Ab Initio and First Principles Studies of Halide Perovskites. Tze-Chien Sum, Nripan Mathews. <i>Halide Perovskites: Photovoltaics, Light Emitting Devices, and Beyond<\/i>, Wiley-VCH, pp.25-53, 2018, 978-3-527-80078-0. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/9783527800766.ch1_02\">&#x27E8;10.1002\/9783527800766.ch1_02&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01983023v1\">&#x27E8;hal-01983023&#x27E9;<\/a><\/li><li>Charles Cornet, Mickael da Silva, Christophe Levallois, Olivier Durand. Chapter 28 - GaP\/Si-Based Photovoltaic Devices Grown by Molecular Beam Epitaxy. <i>Molecular Beam Epitaxy (Second Edition)From Research to Mass Production<\/i>, pp.637-648, 2018, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1016\/B978-0-12-812136-8.00030-X\">&#x27E8;10.1016\/B978-0-12-812136-8.00030-X&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01859116v1\">&#x27E8;hal-01859116&#x27E9;<\/a><\/li><li>Jacky Even, Giacomo Giorgi, Claudine Katan, H. Kawai, Koichi Yamashita. Organic-Inorganic Halide Perovskite quasi-particles nature analysis via the interplay among classic solid state concepts, Density Functional, and Many Body Perturbation Theory. Giacomo Giorgi, Koichi Yamashita. <i>Theoretical Modeling of Organohalide Perovskites for Photovoltaic Applications<\/i>, CRC Press, 2017, 9781498750783. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01485462v1\">&#x27E8;hal-01485462&#x27E9;<\/a><\/li><li>Alberto Parini, Gaetano Bellanca. Design and Optimization of Vertical interconnections for Multilayer Optical Networks-on-Chip. Mahdi Nikdast; Gabriela Nicolescu; S\u00e9bastien Le Beux; Jiang Xu. <i>Design and Optimization of Vertical interconnections for Multilayer Optical Networks-on-Chip<\/i>, <a target=\"_blank\" href=\"http:\/\/www.riverpublishers.com\">River Publishers<\/a>, 2017, Photonic Interconnects for Computing Systems, 978-87-93519-80-0. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01575567v1\">&#x27E8;hal-01575567&#x27E9;<\/a><\/li><li>Christian Ley, Christiane Carr\u00e9, Ahmad Ibrahim, Xavier Allonas. Application of High Performance Photoinitiating Systems for Holographic Grating Recording. Izabela Naydenova, Dimana Nazarova and Tsvetanka Babeva. <i>Holographic Materials and Optical Systems<\/i>, <a target=\"_blank\" href=\"https:\/\/www.intechopen.com\/\">InTech<\/a>, 375-404 (chapitre 17), 2017, 978-953-51-3038-3. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.5772\/66073\">&#x27E8;10.5772\/66073&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01578773v1\">&#x27E8;hal-01578773&#x27E9;<\/a><\/li><li>Jacky Even, Wang Cheng, Fr\u00e9d\u00e9ric Grillot.  Chapter 3 From Basic Physical Properties of InAs\/InP Quantum Dots to State-of-the-Art Lasers for 1.55 \u03bcm Optical Communications: An Overview. Tupei Chen, Yang Liu. <i>Semiconductor Nanocrystals and Metal Nanoparticles: Physical Properties and Device Applications<\/i>, CRC Press, 2016, 9781439878309. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01402662v1\">&#x27E8;hal-01402662&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Daniel Sapori, Alain Rolland, Mikael Kepenekian, et al.. Chapter 7: Electronic Properties of Metal Halide Perovskites. <i>Unconventional Thin Film Photovoltaics<\/i>, pp.202-233, 2016, 978-1-78262-293-2. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1039\/9781782624066-00202\">&#x27E8;10.1039\/9781782624066-00202&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01352437v1\">&#x27E8;hal-01352437&#x27E9;<\/a><\/li><li>Adel Najar, Jo\u00ebl Charrier. Chapter 9: Study of Mesoporous Silicon Nanowires. <i>Comprehensive Guide for Mesoporous Materials<\/i>, 2, Nova Science Publishers, pp.201-224, 2015, Analysis and Functionalization, 978-1-63463-982-8. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02429469v1\">&#x27E8;hal-02429469&#x27E9;<\/a><\/li><li>Jo\u00ebl Charrier, Parastesh Pirasteh. Chapter 9: Optical Properties of Mesoporous Silicon\/Silicon Oxide and the Light Propagation in these Materials. <i>Comprehensive Guide for Mesoporous Materials<\/i>, 3, Nova Science Publishers, pp.241-270, 2015, Properties and Development, 978-1-63463-318-5. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02429466v1\">&#x27E8;hal-02429466&#x27E9;<\/a><\/li><li>Christiane Carr\u00e9. Mat\u00e9riaux polym\u00e8res pour l'optique\r\n. OMNT (Observatoire des Micro- et Nano-Technologoies). <i>Micro et Nanotechnologies : Avanc\u00e9es, tendances et perspectives (Veille strat\u00e9gique : Synth\u00e8se de l\u2019ann\u00e9e 2011 ; Th\u00e9matique \"Mat\u00e9riaux et composants pour l\u2019optique)<\/i>, <a target=\"_blank\" href=\"http:\/\/www.omnt.fr\/\"><\/a>, pp.183-184, 2012. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01149916v1\">&#x27E8;hal-01149916&#x27E9;<\/a><\/li><li>Christiane Carr\u00e9. Mat\u00e9riaux polym\u00e8res pour l\u2019optique\" dans la th\u00e9matique \"Mat\u00e9riaux et composants pour l\u2019optique\". OMNT (Observatoire des Micro et NanoTechnologies). <i>Veille strat\u00e9gique de l\u2019Observatoire des Micro- et Nano-Technologies : Synth\u00e8se de l\u2019ann\u00e9e 2009<\/i>, <a target=\"_blank\" href=\"http:\/\/www.omnt.fr\"><\/a>, pp.36-38, 2010. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01149924v1\">&#x27E8;hal-01149924&#x27E9;<\/a><\/li><li>Christiane Carr\u00e9, Raymond Chevallier, B\u00e9n\u00e9dicte Mailhot, Agn\u00e8s Rivaton. Understanding microstructure development in holographic polymer-dispersed liquid crystals. Fouassier, J. P., Allonas, X. <i>Basics and Applications of Photopolymerization Reactions<\/i>, 3, <a target=\"_blank\" href=\"http:\/\/www.ressign.com\/\">Research Signpost: Trivandrum<\/a>, pp.175-184, 2010, Basics and Applications of Photopolymerization Reactions, Vol. 3, 978-81-308-0430-9. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01151891v1\">&#x27E8;hal-01151891&#x27E9;<\/a><\/li><li>F. Raineri, Yannick Dumeige. Chapter 5 \u00ab Non-linear optics in nano- and microstructures \u00bb. <i>Nanophotonics<\/i>, ISTE, 2006, ISBN 1905209282. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00214286v1\">&#x27E8;hal-00214286&#x27E9;<\/a><\/li><li>Dominique Bosc. Chapitre XII \u00ab Physique des Polym\u00e8res \u00e0 l'Etat Solide \u00bb. <i>Initiation \u00e0 la Science des Polym\u00e8res, Volume 17 \u201cPropi\u00e9t\u00e9s optiques des polym\u00e8res\u201d<\/i>, Groupe Fran\u00e7ais des Polym\u00e8res, pp.349 380, 2006. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00148131v1\">&#x27E8;hal-00148131&#x27E9;<\/a><\/li><li>Fr\u00e9d\u00e9ric Aniel, Soline Richard, S\u00e9bastien Sauvage, Philippe Boucaud, Guy Fishman. Chap. 14: Influence des contraintes sur les propri\u00e9t\u00e9s \u00e9lectroniques et optiques des semi-conducteurs. M. Mouis. <i>Contraintes m\u00e9caniques en micro-nano-opto\u00e9lectronique<\/i>, Encyclop\u00e9die EGEM, Herm\u00e8s, France, pp.379-441, 2006. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00491920v1\">&#x27E8;hal-00491920&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Article de blog scientifique<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">1 document<\/span><\/h3><div class=\"grp-content\"><ul><li>St\u00e9phanie Jolly, Marie Le, Ga\u00eblle Boudry, Clair-Yves Boquien, Jean-Marc Goujon, et al.. Allaitement. 2018, https:\/\/www.pole-valorial.fr\/success_stories\/allaitement. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02420645v1\">&#x27E8;hal-02420645&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Brevets<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">12 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Noe Ortega-Quijano, Julien Fade, Mehdi Alouini. Coherent light source with fully controllable state and degree of polarization. France, Patent n\u00b0 : EP17165383.5. 2017. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01953026v1\">&#x27E8;hal-01953026&#x27E9;<\/a><\/li><li>Philippe Rochard. Proc\u00e9d\u00e9 d'immobilisation dans l'espace d'un syst\u00e8me \u00e0 fibre optique pour l'assemblage d\u00e9finitif fibre-circuit optique. France, N\u00b0 de brevet: FR10\/02578. 2011. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00586713v1\">&#x27E8;hal-00586713&#x27E9;<\/a><\/li><li>St\u00e9phane Blin, Monique Thual, Nguyen Thanh Nam, Duc Minh Nguyen, Philippe Rochard, et al.. System and method for observing transverse modes of an optical waveguide. United States, Patent n\u00b0 : WO 2010\/133488 A l. 2010. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02921723v1\">&#x27E8;hal-02921723&#x27E9;<\/a><\/li><li>Jean-Marc Goujon, Patrick Guyader, Ronan Le Page, Michel Billon, Philippe Fravalo, et al.. Syst\u00e8me d'imagerie par balayage d'une surface d'un \u00e9chantillon, support et dispositif de lecture correspondants.. France, N\u00b0 de brevet: WO2010084193A1. 2010. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00486893v1\">&#x27E8;hal-00486893&#x27E9;<\/a><\/li><li>Jean-Marc Goujon, Michel Billon, Ronan Le Page, Patrick Guyader. Dispositif de d\u00e9termination d'un \u00e9tat de stress chez un sujet vivant, proc\u00e9d\u00e9 et produit programme d'ordinateur correspondants. Union europ\u00e9enne, N\u00b0 de brevet: EP2196144A1. 2010. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00493052v1\">&#x27E8;hal-00493052&#x27E9;<\/a><\/li><li>St\u00e9phane Blin, Monique Thual, Thanh Nam Nguyen, Duc Minh Nguyen, Philippe Rochard, et al.. Proc\u00e9d\u00e9 et syst\u00e8me d'observation de modes transverses d'un guide optique. France, N\u00b0 de brevet: FR2945637 (A1). 2009, pp.16. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00585114v1\">&#x27E8;hal-00585114&#x27E9;<\/a><\/li><li>Jean-Marc Goujon, Patrick Guyader, Sandrine Thuillier, Michel Billon, Henry L'Her, et al.. Device for measuring at least one physiological parameter. 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France, Patent n\u00b0 : US 6,768,837 B1. 2004. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02921696v1\">&#x27E8;hal-02921696&#x27E9;<\/a><\/li><li>Pascal Besnard, Patrice Feron, O. Bouchet, Adrian Mihaescu. Concentrateur amplificateur d'onde \u00e9lectromagn\u00e9tique optique. France, N\u00b0 de brevet: PCT\/EP2004\/006421. 2004. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00351009v1\">&#x27E8;hal-00351009&#x27E9;<\/a><\/li><li>Monique Thual, Philippe Chanclou, Philippe Gravey. Optical Collimator For Monomode Fibres, Monomode Fibre With Integrated Collimator And Method For Making Same. France, Patent n\u00b0 : US 20040047575A1. 2004. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02921635v1\">&#x27E8;hal-02921635&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Autres publications<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">17 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Julien Fade, Marie-Aude Lefeuvre, Sylvia Girel. \"Le Rayon Extraordinaire\u201d: quand la polarisation inspire l\u2019art. <i>The Conversation France<\/i>, 2023. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05367308v1\">&#x27E8;hal-05367308&#x27E9;<\/a><\/li><li>Laurent Pedesseau, Mika\u00ebl Kepenekian, Claudine Katan, Jacky Even. From unusual semiconductors at the atomic scale to potentially promising devices.. 2020. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-02462690v1\">&#x27E8;hal-02462690&#x27E9;<\/a><\/li><li>Mika\u00ebl Kepenekian, Jacky Even. Cover Picture: Giant spin\u2013orbit coupling in halide perovskites opens the door to spintronics and spin\u2013orbitronics. (J. Phys. Chem. Lett. 8(14), 2017). 2017. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01566312v1\">&#x27E8;hal-01566312&#x27E9;<\/a><\/li><li>Ming Fu, Philippe Tamarat, Huang He, Jacky Even, Andrey L. Rogach, et al.. Cover Picture: Neutral and Charged Exciton Fine Structure in Single Lead Halide Perovskite Nanocrystals Revealed by Magneto-optical Spectroscopy (Nanoletters 17(5), 2017). 2017. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01528295v1\">&#x27E8;hal-01528295&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Claudine Katan, Mika\u00ebl Kepenekian, Jean\u2010s\u00e9bastien Lauret, et al.. Cover Picture: Hybrid perovskite electronic band structure from atomic orbitals, spin-orbit coupling, and exciton molecular screening (J. Phys. Chem. C May 14, 2015: Vol. 119, Iss. 19). 2015. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01154775v1\">&#x27E8;hal-01154775&#x27E9;<\/a><\/li><li>Hong-Hua Fang, Raissa Raissa, Mustapha Abdu-Aguye, Sampson Adjokatse, Graeme R Blake, et al.. Inside Front Cover: Hybrid Perovskites: Photophysics of Organic\u2013Inorganic Hybrid Lead Iodide Perovskite Single Crystals (Adv. Funct. Mater. 16\/2015). 2015, pp.inside front cover. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/adfm.201570107\">&#x27E8;10.1002\/adfm.201570107&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01162183v1\">&#x27E8;hal-01162183&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Claudine Katan. Cover Picture: Understanding Quantum Confinement of Charge Carriers in Layered 2D Hybrid Perovskites (ChemPhysChem 17\/2014). 2014, <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/cphc.201490083\">&#x27E8;10.1002\/cphc.201490083&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01086241v1\">&#x27E8;hal-01086241&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Jean-Marc Jancu, Claudine Katan. DFT and k \u00b7 p modelling of the phase transitions of lead and tin halide perovskites for photovoltaic cells (Phys. Status Solidi RRL 1\/2014). 2014, pp.Back Cover. <a target=\"_blank\" href=\"https:\/\/dx.doi.org\/10.1002\/pssr.201470502\">&#x27E8;10.1002\/pssr.201470502&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00939181v1\">&#x27E8;hal-00939181&#x27E9;<\/a><\/li><li>Charles Cornet. Contribution to the study of monolithic integration of III-V semiconductors on silicon in the pseudomorphic approach for photonics and photovoltaics. 2014. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01114704v1\">&#x27E8;hal-01114704&#x27E9;<\/a><\/li><li>Charles Cornet, C\u00e9dric Robert Robert, Yoan L\u00e9ger. Integration of III-V nanostructures on silicon in the pseudomorphic approach. 2013. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00918789v1\">&#x27E8;hal-00918789&#x27E9;<\/a><\/li><li>Yann Boucher. Formalisme matriciel \u00e9tendu : De l\u2019\u00e9mission spontan\u00e9e au franchissement du seuil laser. 2012. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01150591v1\">&#x27E8;hal-01150591&#x27E9;<\/a><\/li><li>Yann Boucher. Formalisme matriciel \u00e9tendu : De l\u2019\u00e9mission spontan\u00e9e au franchissement du seuil laser. 2012. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01158027v1\">&#x27E8;hal-01158027&#x27E9;<\/a><\/li><li>Yann Boucher. Couplonique : une initiation. 2011. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01150589v1\">&#x27E8;hal-01150589&#x27E9;<\/a><\/li><li>Yann Boucher. Couplonique : une initiation. 2011. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01158026v1\">&#x27E8;hal-01158026&#x27E9;<\/a><\/li><li>Pierre-Henri Merrer, Houda Brahimi, Pierre Lacroix, Sophie Bonnefont, Olivier Llopis, et al.. Sources hyperfr\u00e9quences \u00e0 tr\u00e8s haute puret\u00e9 spectrale \u00e0 base de mini-r\u00e9sonateurs optique. 2008. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00383753v1\">&#x27E8;hal-00383753&#x27E9;<\/a><\/li><li>Pascal Besnard, Celine Guignard, Liam P. Barry. Pulse and SYstem CHAracterization of MOde-Locked Laser for Optical Communications. 2006. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00259943v1\">&#x27E8;hal-00259943&#x27E9;<\/a><\/li><li>S. B. Constant, Pierre-Henri Merrer, Bertrand Onillon, Sophie Bonnefont, Olivier Llopis, et al.. Sources hyperfr\u00e9quences \u00e0 haute puret\u00e9 spectrale \u00e0 base de micro-r\u00e9sonateurs. 2005. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00232814v1\">&#x27E8;hal-00232814&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Pr\u00e9-publications, Documents de travail<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">37 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Searches for Continuous Gravitational Waves from Supernova Remnants in the first part of the LIGO-Virgo-KAGRA Fourth Observing run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05593496v1\">&#x27E8;hal-05593496&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. GWTC-4.0: Tests of General Relativity. I. Overview and General Tests. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05583393v1\">&#x27E8;hal-05583393&#x27E9;<\/a><\/li><li>Fran\u00e7ois Bondu. Brewster angle for z-cut uniaxial crystal and p-polarization beam. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05518234v1\">&#x27E8;hal-05518234&#x27E9;<\/a><\/li><li>F Acernese, A Agapito, D Agarwal, I.-L Ahrend, L Aiello, et al.. Advanced Virgo Plus for O5 -- Design Report Overview. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05568860v1\">&#x27E8;hal-05568860&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, A Adam, et al.. All-sky Searches for Continuous Gravitational Waves from Isolated Neutron Stars in the Data from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05568465v1\">&#x27E8;hal-05568465&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. GWTC-4.0: Searches for Gravitational-Wave Lensing Signatures. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05503589v1\">&#x27E8;hal-05503589&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Open Data from LIGO, Virgo, and KAGRA through the First Part of the Fourth Observing Run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05495560v1\">&#x27E8;hal-05495560&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Cosmological and High Energy Physics implications from gravitational-wave background searches in LIGO-Virgo-KAGRA's O1-O4a runs. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05495323v1\">&#x27E8;hal-05495323&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. All-sky search for continuous gravitational-wave signals from unknown neutron stars in binary systems in the first part of the fourth LIGO-Virgo-KAGRA observing run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05495373v1\">&#x27E8;hal-05495373&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Upper Limits on the Isotropic Gravitational-Wave Background from the first part of LIGO, Virgo, and KAGRA's fourth Observing Run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05494867v1\">&#x27E8;hal-05494867&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Directional Search for Persistent Gravitational Waves: Results from the First Part of LIGO-Virgo-KAGRA's Fourth Observing Run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05495279v1\">&#x27E8;hal-05495279&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Constraints on gravitational waves from the 2024 Vela pulsar glitch. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05495662v1\">&#x27E8;hal-05495662&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. GWTC-4.0: Constraints on the Cosmic Expansion Rate and Modified Gravitational-wave Propagation. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05494909v1\">&#x27E8;hal-05494909&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. GWTC-4.0: Population Properties of Merging Compact Binaries. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05493657v1\">&#x27E8;hal-05493657&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05493601v1\">&#x27E8;hal-05493601&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Direct multi-model dark-matter search with gravitational-wave interferometers using data from the first part of the fourth LIGO-Virgo-KAGRA observing run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05491565v1\">&#x27E8;hal-05491565&#x27E9;<\/a><\/li><li>R Abbasi, M Ackermann, J Adams, S.K Agarwalla, J.A Aguilar, et al.. Deep Search for Joint Sources of Gravitational Waves and High-Energy Neutrinos with IceCube During the Third Observing Run of LIGO and Virgo. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05482446v1\">&#x27E8;hal-05482446&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Search for planetary-mass ultra-compact binaries using data from the first part of the LIGO--Virgo--KAGRA fourth observing run. 2026. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05459492v1\">&#x27E8;hal-05459492&#x27E9;<\/a><\/li><li>Julia Bonnet, Youssef El-Habouz, C\u00e9lia Martin, Maelle Guillout, Louis Ruel, et al.. The Roboscope: Smart and Fast Microscopy for Generic Event-Driven Acquisition. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05396530v1\">&#x27E8;hal-05396530&#x27E9;<\/a><\/li><li>Jacky Even, Simon Thebaud, Aseem Rajan Kshirsagar, Zeli Xu, Laurent Pedesseau, et al.. Theoretical approaches to Fr\u00f6hlich excitonic polarons in polar semiconductors. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05344812v1\">&#x27E8;hal-05344812&#x27E9;<\/a><\/li><li>Marios Zacharias, George Volonakis, Laurent Pedesseau, Claudine Katan, Feliciano Giustino, et al.. Electron-phonon couplings in locally disordered materials: The case of hybrid halide perovskites. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05344829v1\">&#x27E8;hal-05344829&#x27E9;<\/a><\/li><li>Jin Hou, Jared Fletcher, Siedah Hall, Hao Zhang, Marios Zacharias, et al.. Two-dimensional perovskites with maximum symmetry enable exciton diffusion length exceeding 2 micrometers. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05344778v1\">&#x27E8;hal-05344778&#x27E9;<\/a><\/li><li>Hao Zhang, Altaf Pasha, Isaac Metcalf, Jianlin Zhou, Mathias Staunstrup, et al.. Overcoming the surface paradox: Buried perovskite quantum dots in wide-bandgap perovskite thin films. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05344653v1\">&#x27E8;hal-05344653&#x27E9;<\/a><\/li><li>Marios Zacharias, George Volonakis, Laurent Pedesseau, Claudine Katan, Feliciano Giustino, et al.. Roadmap for electronic structure, anharmonicity, and electron-phonon calculations in locally disordered inorganic and hybrid halide perovskites. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05344840v1\">&#x27E8;hal-05344840&#x27E9;<\/a><\/li><li>A.G Abac, I Abouelfettouh, F Acernese, K Ackley, C Adamcewicz, et al.. Directed searches for gravitational waves from ultralight vector boson clouds around merger remnant and galactic black holes during the first part of the fourth LIGO-Virgo-KAGRA observing run. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05327812v1\">&#x27E8;hal-05327812&#x27E9;<\/a><\/li><li>Thierry Chartier. Banc d'holographie couleur de l'Enssat. 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-05155005v1\">&#x27E8;hal-05155005&#x27E9;<\/a><\/li><li>Robert Bettles, Teodora Ilieva, Hannes Busche, Paul Huillery, Simon Ball, et al.. Collective Mode Interferences in Light--Matter Interactions. 2023. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04291851v1\">&#x27E8;hal-04291851&#x27E9;<\/a><\/li><li>Maxime Perdriat, Cosimo C Rusconi, Tom Delord, Paul Huillery, Cl\u00e9ment Pellet-Mary, et al.. Spin Read-out of the Motion of Levitated Electrically Rotated Diamonds. 2023. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04230029v1\">&#x27E8;hal-04230029&#x27E9;<\/a><\/li><li>C. Pellet-Mary, M. Perdriat, P. Huillery, G. H\u00e9tet. Spin-Relaxation of Dipolar-Coupled Nitrogen-Vacancy Centers : The role of Double-flip Processes. 2022. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-03760627v1\">&#x27E8;hal-03760627&#x27E9;<\/a><\/li><li>F. Acernese, M. Agathos, A. Ain, S. Albanesi, A. Allocca, et al.. Virgo Detector Characterization and Data Quality during the O3 run. 2022. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-03737863v1\">&#x27E8;hal-03737863&#x27E9;<\/a><\/li><li>Mehdi Alouini, Gwenna\u00ebl Danion, Marc Vallet. Ultra-narrow linewidth self-adaptive photonic oscillator: principle and realization. 2021. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-03317808v1\">&#x27E8;hal-03317808&#x27E9;<\/a><\/li><li>Gwenna\u00ebl Danion, Marc Vallet, Ludovic Frein, Pascal Szriftgiser, Mehdi Alouini. Optoelectronic nibbling of laser linewidth using a Brillouin-assisted optical phase-locked loop. 2018. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01871973v1\">&#x27E8;hal-01871973&#x27E9;<\/a><\/li><li>Alain Rolland, L. Pedesseau, Alexandre Beck, Mikael Kepenekian, Claudine Katan, et al.. Computational design of high performance hybrid perovskite on silicon tandem solar cells. 2016. <a target=\"_blank\" href=\"https:\/\/univ-rennes.hal.science\/hal-01275497v1\">&#x27E8;hal-01275497&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Claudine Katan. Intrinsic multi-valley and multi-bandgap absorption and inhibition of exciton formation in hybrid perovskites. 2014. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04500224v1\">&#x27E8;hal-04500224&#x27E9;<\/a><\/li><li>Jacky Even, Laurent Pedesseau, Claudine Katan. Hybrid perovskites: intrinsic multi-valley and multi-bandgap absorption for efficient solar cells. 2013. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04500208v1\">&#x27E8;hal-04500208&#x27E9;<\/a><\/li><li>Vincent Roncin, Sylvain F\u00e8ve, Audrey Millaud, Romain Cramer, Yves Jaou\u00ebn, et al.. High-sensitive Optical Pulse-Shape Characterization using a Beating-Contrast-Measurement Technique. 2009. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00989867v1\">&#x27E8;hal-00989867&#x27E9;<\/a><\/li><li>Vincent Roncin, Gwena\u00eblle Girault, Mathilde Gay, Laurent Bramerie, Jean-Claude Simon. SOA - NOLM in Reflective Configuration for Optical Regeneration in High Bit Rate Transmission Systems. 2007. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00989842v1\">&#x27E8;hal-00989842&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Rapports<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">3 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Serge Simo\u00ebns, Pascale Gillon, Boucher Yann, Audoly Christian, Deltimple Nathalie, et al.. Rapport de Prospective Conseil Scientifique CNRS Ing\u00e9nierie (Ex: INSIS). CNRS Ing\u00e9nierie. 2023. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-04357891v1\">&#x27E8;hal-04357891&#x27E9;<\/a><\/li><li>St\u00e9phane Balac, Patrice Feron. Whispering gallery modes volume computation in optical micro-spheres. [Research Report] FOTON, UMR CNRS 6082. 2014. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-01279396v2\">&#x27E8;hal-01279396v2&#x27E9;<\/a><\/li><li>St\u00e9phane Balac, Arnaud Fernandez. Comparison of adaptive step-size control strategies for solving the Generalised Non-Linear Schrodinger Equation in optics by the Interaction Picture method. 2012. <a target=\"_blank\" href=\"https:\/\/hal.science\/hal-00740771v1\">&#x27E8;hal-00740771&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Th\u00e8ses<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">125 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Ronan Kervazo. D\u00e9veloppement de la photonique int\u00e9gr\u00e9e \u00e0 base d\u2019Al\u2082O\u2083 pour l\u2018affinement spectral de diodes laser dans le bleu et le proche ultraviolet. Optique \/ photonique. Universit\u00e9 de Rennes, 2025. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS078\">&#x27E8;NNT : 2025URENS078&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05540504v1\">&#x27E8;tel-05540504&#x27E9;<\/a><\/li><li>Dylan Chevalier. Am\u00e9lioration des r\u00e9seaux d'acc\u00e8s optique par \u00e9galisation analogique. Optique \/ photonique. Universit\u00e9 de Rennes, 2025. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS070\">&#x27E8;NNT : 2025URENS070&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-05405697v2\">&#x27E8;tel-05405697v2&#x27E9;<\/a><\/li><li>Quentin Segondat. Design and production of amplifier devices based on Erbium doped aluminum oxide waveguide. Optics \/ Photonic. Universit\u00e9 de Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS072\">&#x27E8;NNT : 2025URENS072&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05515056v1\">&#x27E8;tel-05515056&#x27E9;<\/a><\/li><li>Daria Gudz. (Sub-)millimeter spectroscopy instrument for detection of volatile soil emissions. Optics \/ Photonic. Universit\u00e9 de Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS059\">&#x27E8;NNT : 2025URENS059&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05425671v3\">&#x27E8;tel-05425671v3&#x27E9;<\/a><\/li><li>Sreejith Pallikkara Chandrasekharan. Mod\u00e9lisation DFT des surfaces et interfaces pour l'int\u00e9gration monolithique de semiconducteurs III-V\/Si. Optique \/ photonique. INSA de Rennes, 2025. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025ISAR0011\">&#x27E8;NNT : 2025ISAR0011&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05504860v1\">&#x27E8;tel-05504860&#x27E9;<\/a><\/li><li>Antoine Lemoine. Alternating polarity crystalline materials for nonlinear photonics. Optics \/ Photonic. INSA de Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025ISAR0016\">&#x27E8;NNT : 2025ISAR0016&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05569562v1\">&#x27E8;tel-05569562&#x27E9;<\/a><\/li><li>Antoine Lemoine. Alternating crystalline polarity materials for nonlinear photonics. Physics [physics]. Institut National des Sciences Appliqu\u00e9es - Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-05454399v1\">&#x27E8;tel-05454399&#x27E9;<\/a><\/li><li>Ashanti Bergonzoni. Optoelectronic properties of perovskites materials for low-cost photovoltaic and electroluminescent systems. Electronics. INSA de Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025ISAR0012\">&#x27E8;NNT : 2025ISAR0012&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05504889v1\">&#x27E8;tel-05504889&#x27E9;<\/a><\/li><li>Gr\u00e9gory Lefr\u00e8re. D\u00e9veloppement d\u2019un syst\u00e8me de v\u00e9locim\u00e9trie laser dans le moyen infrarouge. Optique \/ photonique. Universit\u00e9 de Rennes, 2025. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS026\">&#x27E8;NNT : 2025URENS026&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05308208v1\">&#x27E8;tel-05308208&#x27E9;<\/a><\/li><li>Abdelali Hammouti. Am\u00e9lioration des performances de la plateforme \u00e0 base de verres de chalcog\u00e9nure en optique int\u00e9gr\u00e9e pour le proche et moyen infrarouge. Optique \/ photonique. Universit\u00e9 de Rennes, 2025. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025URENS047\">&#x27E8;NNT : 2025URENS047&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05462619v1\">&#x27E8;tel-05462619&#x27E9;<\/a><\/li><li>Bienlo Flora Christine Zerbo. Development and characterization of silicon based solar cells with molybdenum trioxide (MoO3-x) selective contacts. Optics \/ Photonic. INSA de Rennes, 2025. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2025ISAR0005\">&#x27E8;NNT : 2025ISAR0005&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05289036v1\">&#x27E8;tel-05289036&#x27E9;<\/a><\/li><li>Asma Bouzid. Conception de micro-g\u00e9n\u00e9rateur pi\u00e9zo\u00e9lectrique pour des micro-dispositifs m\u00e9dicaux autonomes. Optique \/ photonique. Universit\u00e9 de Rennes; Universit\u00e9 Abou Bekr Belkaid\u200e (Tlemcen, Alg\u00e9rie), 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS106\">&#x27E8;NNT : 2024URENS106&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05056621v1\">&#x27E8;tel-05056621&#x27E9;<\/a><\/li><li>Louis Alliot de Borggraef. Mise en oeuvre et caract\u00e9risation des boucles \u00e0 d\u00e9calage de fr\u00e9quence \u00e9lectro-optique : m\u00e9trologie dual-comb pour le lidar \u00e0 haute r\u00e9solution et les capteurs distribu\u00e9s. Optique \/ photonique. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS108\">&#x27E8;NNT : 2024URENS108&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05101000v1\">&#x27E8;tel-05101000&#x27E9;<\/a><\/li><li>Hanh Vi Le. III-V\/Si photocathodes for solar hydrogen production : Catalysis and Surface passivation. Electronics. INSA de Rennes, 2024. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024ISAR0019\">&#x27E8;NNT : 2024ISAR0019&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05332775v1\">&#x27E8;tel-05332775&#x27E9;<\/a><\/li><li>Abdallah Jaafar. D\u00e9veloppement de mat\u00e9riaux poreux pour des applications de d\u00e9tection en optique int\u00e9gr\u00e9e dans le moyen infrarouge. Optique \/ photonique. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS043\">&#x27E8;NNT : 2024URENS043&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04851979v1\">&#x27E8;tel-04851979&#x27E9;<\/a><\/li><li>Gaedze Kudjo Herman Akagla. Peignes de fr\u00e9quences \u00e0 diversit\u00e9 de polarisation dans les lasers \u00e0 solides dop\u00e9s ytterbium. Optique \/ photonique. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS033\">&#x27E8;NNT : 2024URENS033&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-04789679v2\">&#x27E8;tel-04789679v2&#x27E9;<\/a><\/li><li>Sadok Kouz. Conception de plateforme SERS \u00e0 base de nanosilicium pour la biod\u00e9tection. Optique \/ photonique. Universit\u00e9 de Rennes; Universit\u00e9 de Tunis El Manar, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS047\">&#x27E8;NNT : 2024URENS047&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-05264971v1\">&#x27E8;tel-05264971&#x27E9;<\/a><\/li><li>Valentine Gaudillat. E\u0301tude du m\u00e9lange \u00e0 quatre ondes sensible \u00e0 la phase dans les fibres faiblement multimodes. Optique \/ photonique. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS028\">&#x27E8;NNT : 2024URENS028&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04754199v1\">&#x27E8;tel-04754199&#x27E9;<\/a><\/li><li>Sofiane Meziani. D\u00e9veloppement de capteurs spectroscopiques en photonique int\u00e9gr\u00e9e dans le moyen infrarouge. Optique \/ photonique. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2024URENS027\">&#x27E8;NNT : 2024URENS027&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04749494v1\">&#x27E8;tel-04749494&#x27E9;<\/a><\/li><li>Maroun Hjeij. Imagerie hyperspectrale active dans l'infrarouge moyen : \"application agrophotonique\". Traitement du signal et de l'image [eess.SP]. Universit\u00e9 de Rennes, 2024. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-04599428v1\">&#x27E8;tel-04599428&#x27E9;<\/a><\/li><li>Eug\u00e8ne Bertin. Study of epitaxial Cu(In,Ga)S2\/GaP\/Si heterostructures for tandem solar cells applications. Optics \/ Photonic. INSA de Rennes, 2023. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023ISAR0022\">&#x27E8;NNT : 2023ISAR0022&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04652574v1\">&#x27E8;tel-04652574&#x27E9;<\/a><\/li><li>Romain Agaisse. Auto-affinement spectral laser assist\u00e9 par effet Brillouin. Optique [physics.optics]. Universit\u00e9 de Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS091\">&#x27E8;NNT : 2023URENS091&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04533924v1\">&#x27E8;tel-04533924&#x27E9;<\/a><\/li><li>Brian Sinquin. Oscillateur opto\u00e9lectronique \u00e0 modulation directe : G\u00e9n\u00e9ration de signaux micro-ondes et d'impulsions optiques courtes. Optique \/ photonique. INSA de Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023ISAR0014\">&#x27E8;NNT : 2023ISAR0014&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04575280v1\">&#x27E8;tel-04575280&#x27E9;<\/a><\/li><li>Brian Sinquin. Oscillateur opto\u00e9lectronique \u00e0 modulation directe. G\u00e9n\u00e9ration de signaux micro-ondes et d'impulsions optiques courtes.. Optique [physics.optics]. Institut National des Sciences Appliqu\u00e9es - Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-04461814v1\">&#x27E8;tel-04461814&#x27E9;<\/a><\/li><li>Amith Karuvath. Spectral purity transfer through optical injection using highly coherent, wavelength selectable sources. Optics [physics.optics]. Universit\u00e9 de Rennes, 2023. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS127\">&#x27E8;NNT : 2023URENS127&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04674556v1\">&#x27E8;tel-04674556&#x27E9;<\/a><\/li><li>J\u00e9r\u00e9my Potet. Contribution \u00e0 l'\u00e9volution des interfaces optiques des r\u00e9seaux d'acc\u00e8s vers les tr\u00e8s hauts d\u00e9bits. Optique \/ photonique. Universit\u00e9 de Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS079\">&#x27E8;NNT : 2023URENS079&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04506275v1\">&#x27E8;tel-04506275&#x27E9;<\/a><\/li><li>Majdi Richa. Power Consumption Modeling in Embedded Systems Hardware. Electronics. INSA de Rennes, 2023. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023ISAR0024\">&#x27E8;NNT : 2023ISAR0024&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04653150v1\">&#x27E8;tel-04653150&#x27E9;<\/a><\/li><li>Erwan Weckenmann. Applications des modulateurs en silicium pour les communications optiques haut d\u00e9bit \u00e0 courte port\u00e9e. Optique [physics.optics]. Universit\u00e9 de Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS024\">&#x27E8;NNT : 2023URENS024&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04223133v1\">&#x27E8;tel-04223133&#x27E9;<\/a><\/li><li>Georges Perin. R\u00e9duction du bruit de fr\u00e9quence de diodes laser InGaN par asservissement sur des r\u00e9sonateurs \u00e0 haut facteur de qualit\u00e9. Optique \/ photonique. Universit\u00e9 de Rennes, 2023. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS143\">&#x27E8;NNT : 2023URENS143&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04705463v2\">&#x27E8;tel-04705463v2&#x27E9;<\/a><\/li><li>Brahim Ahammou. Control of the mechanical and optical properties of SiNx-based films for optical and strain engineering applications. Optics \/ Photonic. Universit\u00e9 de Rennes; McMaster university (Hamilton, Canada), 2023. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2023URENS001\">&#x27E8;NNT : 2023URENS001&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04021310v1\">&#x27E8;tel-04021310&#x27E9;<\/a><\/li><li>Fei Fan. Development of advanced solar cells - Contribution to the HCSC on InP and to the III-V onto Si monolithic tandem cells. Optics \/ Photonic. INSA de Rennes, 2022. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2022ISAR0008\">&#x27E8;NNT : 2022ISAR0008&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04475482v1\">&#x27E8;tel-04475482&#x27E9;<\/a><\/li><li>Mekan Piriyev. Study of photoelectrodes with III-V epitaxial thin-films on Si substrate for photoelectrochemical water splitting. Optics \/ Photonic. INSA de Rennes, 2022. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2022ISAR0037\">&#x27E8;NNT : 2022ISAR0037&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04530741v1\">&#x27E8;tel-04530741&#x27E9;<\/a><\/li><li>Rasool Saleem Urothodi. Linear and nonlinear characterization of monolithically integrated GaP microdisks on Si and GaP substrates. Optics [physics.optics]. Universit\u00e9 de Rennes, 2022. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2022REN1S066\">&#x27E8;NNT : 2022REN1S066&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03959438v1\">&#x27E8;tel-03959438&#x27E9;<\/a><\/li><li>Jonathan Staes. Imagerie polarim\u00e9trique et physique de d\u00e9polarisation lumineuse : polarim\u00e9trie de champs de speckle ultra-r\u00e9solus et approches optique-hyperfr\u00e9quences. Optique [physics.optics]. Universit\u00e9 de Rennes, 2022. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2022REN1S038\">&#x27E8;NNT : 2022REN1S038&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03888748v1\">&#x27E8;tel-03888748&#x27E9;<\/a><\/li><li>Anwar Kerchaoui. R\u00e9alisation d'un VECSEL pomp\u00e9 \u00e9lectriquement faible bruit et \u00e9tude des bo\u00eetes quantiques pour la r\u00e9alisation d'un VECSEL bi-fr\u00e9quence. Optique [physics.optics]. Universit\u00e9 de Rennes, 2022. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2022REN1S016\">&#x27E8;NNT : 2022REN1S016&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03813851v1\">&#x27E8;tel-03813851&#x27E9;<\/a><\/li><li>Fabien Cassio. Circuits photoniques int\u00e9gr\u00e9s hybrides \u00e0 base de silicium poreux et de polym\u00e8res pour des applications de biocapteurs. Optique [physics.optics]. Universit\u00e9 de Rennes, 2021. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021REN1S110\">&#x27E8;NNT : 2021REN1S110&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-03593476v2\">&#x27E8;tel-03593476v2&#x27E9;<\/a><\/li><li>Lipin Chen. Optoelectronic, vibrational and transport properties of III-V\/Si antiphase boundaries for photonics and solar energy harvesting. Materials Science [cond-mat.mtrl-sci]. INSA de Rennes, 2021. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021ISAR0028\">&#x27E8;NNT : 2021ISAR0028&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-04465463v1\">&#x27E8;tel-04465463&#x27E9;<\/a><\/li><li>Sylvain Boust. Composants hybrides par aboutement InP-Si\u2083N\u2084\/SiO\u2082 pour la r\u00e9alisation de lasers \u00e0 faible largeur de raie et de sources de peignes de fr\u00e9quences int\u00e9gr\u00e9s. Optique [physics.optics]. Universit\u00e9 de Rennes, 2021. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021REN1S044\">&#x27E8;NNT : 2021REN1S044&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03470991v1\">&#x27E8;tel-03470991&#x27E9;<\/a><\/li><li>Xavier Insou. Syst\u00e8me embarqu\u00e9 de mesure optique de la combustion du k\u00e9ros\u00e8ne. Optique [physics.optics]. Universit\u00e9 de Rennes, 2021. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021REN1S104\">&#x27E8;NNT : 2021REN1S104&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03669884v1\">&#x27E8;tel-03669884&#x27E9;<\/a><\/li><li>Peppino Primiani. Hybrid Integrated opto-electronic oscillators. Optics [physics.optics]. Universit\u00e9 de Rennes, 2021. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021REN1S106\">&#x27E8;NNT : 2021REN1S106&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03675188v1\">&#x27E8;tel-03675188&#x27E9;<\/a><\/li><li>Joseph Slim. Optical signal processing for space division multiplexed systems. Optics [physics.optics]. Universit\u00e9 de Rennes, 2021. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021REN1S004\">&#x27E8;NNT : 2021REN1S004&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03223184v1\">&#x27E8;tel-03223184&#x27E9;<\/a><\/li><li>Alejandro Lorenzo-Ruiz. Nonlinear integrated photonic devices based on gallium phosphide. Optics \/ Photonic. INSA de Rennes, 2021. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2021ISAR0002\">&#x27E8;NNT : 2021ISAR0002&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03279201v1\">&#x27E8;tel-03279201&#x27E9;<\/a><\/li><li>Ananthu Sebastian. Noise dynamics in multi-Stokes Brillouin laser. Optics \/ Photonic. Universit\u00e9 de Rennes 1, 2020. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-03215224v1\">&#x27E8;tel-03215224&#x27E9;<\/a><\/li><li>Ananthu Sebastian. Noise dynamics in multi-Stokes Brillouin laser. Optics [physics.optics]. Universit\u00e9 de Rennes, 2020. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2020REN1S068\">&#x27E8;NNT : 2020REN1S068&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03210055v1\">&#x27E8;tel-03210055&#x27E9;<\/a><\/li><li>Marie Guionie. Lasers \u00e0 fibres bifr\u00e9quences bipolarisations : stabilisation et mont\u00e9e en fr\u00e9quence du battement. Optique [physics.optics]. Universit\u00e9 de Rennes, 2020. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2020REN1S059\">&#x27E8;NNT : 2020REN1S059&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03194697v1\">&#x27E8;tel-03194697&#x27E9;<\/a><\/li><li>Chaimae El Fakir. Imagerie hyperspectrale active bas\u00e9e sur un laser QCL largement accordable dans l\u2019infrarouge moyen. Optique [physics.optics]. Universit\u00e9 de Rennes, 2020. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2020REN1S110\">&#x27E8;NNT : 2020REN1S110&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03275041v1\">&#x27E8;tel-03275041&#x27E9;<\/a><\/li><li>Maxime Duris. Conception et r\u00e9alisation de filtre optique multicouche \u00e0 grand nombre de couches minces dans le domaine spectral de 0,3 \u00e0 15 \u00b5m. Mat\u00e9riaux. Universit\u00e9 de Rennes, 2020. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2020REN1S109\">&#x27E8;NNT : 2020REN1S109&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-03881832v1\">&#x27E8;tel-03881832&#x27E9;<\/a><\/li><li>Afonso da Cunha Ferreira. Structural and dynamic properties of hybrid organolead perovskites for photovoltaic applications. Materials Science [cond-mat.mtrl-sci]. INSA de Rennes, 2020. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2020ISAR0014\">&#x27E8;NNT : 2020ISAR0014&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/cea.hal.science\/tel-03011313v2\">&#x27E8;tel-03011313v2&#x27E9;<\/a><\/li><li>Ang Zhou. Analyse structurales de pseudo-substrats Gap\/Si et d'h\u00e9t\u00e9rostructures CIGS\/GaP\/Si pour des applications photovolta\u00efques. Mat\u00e9riaux. INSA de Rennes, 2019. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2019ISAR0027\">&#x27E8;NNT : 2019ISAR0027&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02924619v1\">&#x27E8;tel-02924619&#x27E9;<\/a><\/li><li>Ga\u00eblle Brevalle. Etude des boites quantiques pour la r\u00e9alisation d'un laser VECSEL bi-fr\u00e9quence coh\u00e9rent. Optique \/ photonique. INSA de Rennes, 2019. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2019ISAR0023\">&#x27E8;NNT : 2019ISAR0023&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02903102v2\">&#x27E8;tel-02903102v2&#x27E9;<\/a><\/li><li>Salvatore Pes. Nanostructures-based 1.55 \u03bcm-emitting Vertical-(External)-Cavity Surface-Emitting Lasers for microwave photonics and coherent communications. Optics [physics.optics]. INSA de Rennes, 2019. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2019ISAR0013\">&#x27E8;NNT : 2019ISAR0013&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02892844v1\">&#x27E8;tel-02892844&#x27E9;<\/a><\/li><li>Antoine Congar. Affinement spectral et bruit d'intensit\u00e9 de sources coh\u00e9rentes de lumi\u00e8re \u00e0 base de diodes laser en nitrure de gallium \u00e9mettant dans le bleu. Optique [physics.optics]. Universit\u00e9 de Rennes, 2019. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2019REN1S054\">&#x27E8;NNT : 2019REN1S054&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02449757v2\">&#x27E8;tel-02449757v2&#x27E9;<\/a><\/li><li>Hongzhi Yang. \u57fa\u4e8e\u9891\u79fb\u53cd\u9988\u6fc0\u5149\u5668\u7684\u9ad8\u7cbe\u5ea6\u5c04\u9891\u8c03\u5236\u6fc0\u5149\u96f7\u8fbe. Optics \/ Photonic. Beijing Institute of Technology, 2019. Chinese. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02892043v1\">&#x27E8;tel-02892043&#x27E9;<\/a><\/li><li>Rodolphe Collin. Study of relative-intensity noise transfer by frequency doubling in multimode lasers. Optique \/ photonique. Universit\u00e9 de Rennes 1, 2019. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02922458v2\">&#x27E8;tel-02922458v2&#x27E9;<\/a><\/li><li>Ida Lucci. Surface and interface contributions to III-V\/Si hetero-epitaxial growth : Theory and Experiments. Physics [physics]. INSA de Rennes, 2019. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2019ISAR0001\">&#x27E8;NNT : 2019ISAR0001&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02132764v1\">&#x27E8;tel-02132764&#x27E9;<\/a><\/li><li>Alexandre Joly. Optimisation du transfert du spin \u00e9lectronique \u00e0 la polarisation d\u2019un laser \u00e0 semi-conducteur \u00e0 \u00e9mission par la surface. Imagerie m\u00e9dicale. Universit\u00e9 de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018REN1S084\">&#x27E8;NNT : 2018REN1S084&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02119276v1\">&#x27E8;tel-02119276&#x27E9;<\/a><\/li><li>Aur\u00e9lien Thorette. Dynamiques de synchronisation de lasers bifr\u00e9quence \u00e0 \u00e9tat solide et DFB soumis \u00e0 une r\u00e9injection d\u00e9cal\u00e9e en fr\u00e9quence : applications en photonique micro-onde. Optics \/ Photonic. Universit\u00e9 de Rennes, 2018. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018REN1S059\">&#x27E8;NNT : 2018REN1S059&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02062296v1\">&#x27E8;tel-02062296&#x27E9;<\/a><\/li><li>Ronan Tremblay. Propri\u00e9t\u00e9s structurales, optiques et \u00e9lectriques de nanostructures et alliages \u00e0 base de GaP pour la photonique int\u00e9gr\u00e9e sur silicium. Optique \/ photonique. INSA de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018ISAR0026\">&#x27E8;NNT : 2018ISAR0026&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02100960v2\">&#x27E8;tel-02100960v2&#x27E9;<\/a><\/li><li>Paul Azuelos. D\u00e9veloppement de capteurs en optique guid\u00e9e. Science des mat\u00e9riaux [cond-mat.mtrl-sci]. Universit\u00e9 de rennes1 - Comue Universit\u00e9 Bretagne Loire - Ecole doctorale n\u00b0596 : Mati\u00e8re Mol\u00e9cules et Mat\u00e9riaux - Sp\u00e9cialit\u00e9 Photonique, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02021053v1\">&#x27E8;tel-02021053&#x27E9;<\/a><\/li><li>Paul Azuelos. D\u00e9veloppement de capteurs en optique guid\u00e9e. Optique \/ photonique. Universit\u00e9 de Rennes 1, France, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02021161v1\">&#x27E8;tel-02021161&#x27E9;<\/a><\/li><li>Jean-Baptiste Ceppe. E\u0301l\u00e9ments de dynamique du laser pour l'\u00e9laboration d'une source micro-onde miniaturis\u00e9e sur la base de la double \u00e9mission monomode d'un laser \u00e0 mode de galerie. Optique [physics.optics]. Universit\u00e9 de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018REN1S067\">&#x27E8;NNT : 2018REN1S067&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02078928v1\">&#x27E8;tel-02078928&#x27E9;<\/a><\/li><li>Jean-Baptiste Ceppe. El\u00e9ments de dynamique du laser pour l'\u00e9laboration d'une source micro-onde miniaturis\u00e9e sur la base de la double \u00e9mission monomode d'un laser \u00e0 modes de galerie.. Optique \/ photonique. Universit\u00e9 de Rennes 1, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02010230v1\">&#x27E8;tel-02010230&#x27E9;<\/a><\/li><li>Mohamed Omar Sahni. Contribution \u00e0 l'\u00e9tude de techniques pour l'affinement spectral de lasers : application aux diodes \u00e0 blocage de modes destin\u00e9es aux t\u00e9l\u00e9communications optiques coh\u00e9rentes. R\u00e9seaux et t\u00e9l\u00e9communications [cs.NI]. Universit\u00e9 de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018REN1S121\">&#x27E8;NNT : 2018REN1S121&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02269885v1\">&#x27E8;tel-02269885&#x27E9;<\/a><\/li><li>Yong Huang. Mod\u00e9lisation des cellules solaires p\u00e9rovskites, des dispositifs opto\u00e9lectroniques III-V et de la microscopie \u00e0 sonde de Kelvin. Optique [physics.optics]. INSA de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018ISAR0007\">&#x27E8;NNT : 2018ISAR0007&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01881871v1\">&#x27E8;tel-01881871&#x27E9;<\/a><\/li><li>Daniel Sapori. Hybrid Perovskites : Fundamental properties and solar cell thin film technology. Electric power. INSA de Rennes, 2018. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018ISAR0017\">&#x27E8;NNT : 2018ISAR0017&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02918129v1\">&#x27E8;tel-02918129&#x27E9;<\/a><\/li><li>Kevin Audo. E\u0301tude th\u00e9orique et exp\u00e9rimentale des lasers solides bi-fr\u00e9quences auto-r\u00e9gul\u00e9s en bruit d'intensit\u00e9 via des non-lin\u00e9arit\u00e9s intracavit\u00e9. Optique [physics.optics]. Universit\u00e9 de Rennes, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2018REN1S002\">&#x27E8;NNT : 2018REN1S002&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01720039v1\">&#x27E8;tel-01720039&#x27E9;<\/a><\/li><li>Fran\u00e7ois Parnet. Imagerie polarim\u00e9trique active par brisure d\u2019orthogonalit\u00e9. Optique \/ photonique. Universit\u00e9 Rennes 1, 2018. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-01731439v2\">&#x27E8;tel-01731439v2&#x27E9;<\/a><\/li><li>Maxime Baillot. M\u00e9lange \u00e0 quatre ondes multiple pour le traitement tout- optique du signal dans les fibres optiques non lin\u00e9aires. Optique \/ photonique. Universit\u00e9 de Rennes 1, 2017. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02924974v1\">&#x27E8;tel-02924974&#x27E9;<\/a><\/li><li>Enguerran Delcourt. Etude et exaltation des effets non-lin\u00e9aires d\u2019ordre trois en optique int\u00e9gr\u00e9e.. Optique \/ photonique. Universit\u00e9 de Rennes 1 (UR1), FRA., 2017. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-02941233v1\">&#x27E8;tel-02941233&#x27E9;<\/a><\/li><li>J\u00e9r\u00f4me Saublet. Optique non-lin\u00e9aire et propri\u00e9t\u00e9s dynamiques des composants IB\/ISB sur InP, Application aux t\u00e9l\u00e9communications optiques. Optique [physics.optics]. INSA de Rennes, 2017. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2017ISAR0017\">&#x27E8;NNT : 2017ISAR0017&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01730817v1\">&#x27E8;tel-01730817&#x27E9;<\/a><\/li><li>Schadrac Fresnel. Lasers \u00e0 fibre Brillouin multi-stokes : coh\u00e9rence et caract\u00e9risation en bruit. Optique [physics.optics]. Universit\u00e9 de Rennes; Universit\u00e9 Rennes 1 \/ Universit\u00e9 Laval; Universit\u00e9 Laval (Qu\u00e9bec, Canada), 2017. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2017REN1S032\">&#x27E8;NNT : 2017REN1S032&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01649870v2\">&#x27E8;tel-01649870v2&#x27E9;<\/a><\/li><li>Aldo Gutierrez. D\u00e9veloppement d'une plateforme en optique int\u00e9gr\u00e9e en verres de chalcog\u00e9nure pour des applications capteur pour le moyen infrarouge (OPTIMR). Optique [physics.optics]. Universit\u00e9 de Rennes, 2017. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2017REN1S050\">&#x27E8;NNT : 2017REN1S050&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01686222v1\">&#x27E8;tel-01686222&#x27E9;<\/a><\/li><li>Pauline Girault. Micro-r\u00e9sonateurs int\u00e9gr\u00e9s pour des applications capteurs. Optique [physics.optics]. Universit\u00e9 de Rennes, 2016. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2016REN1S144\">&#x27E8;NNT : 2016REN1S144&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-02384939v2\">&#x27E8;tel-02384939v2&#x27E9;<\/a><\/li><li>Pierre Guillem\u00e9. G\u00e9n\u00e9ration de seconde harmonique dans les microdisques de phosphure de gallium int\u00e9gr\u00e9s sur silicium. Autre [cond-mat.other]. INSA de Rennes, 2016. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2016ISAR0015\">&#x27E8;NNT : 2016ISAR0015&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-01496748v2\">&#x27E8;tel-01496748v2&#x27E9;<\/a><\/li><li>Yanping Wang. Structural analyses by advanced X-ray scattering on GaP layers epitaxially grown on silicon for integrated photonic applications. Optics [physics.optics]. INSA de Rennes, 2016. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2016ISAR0013\">&#x27E8;NNT : 2016ISAR0013&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01450671v2\">&#x27E8;tel-01450671v2&#x27E9;<\/a><\/li><li>Fethallah Taleb. Nouvelles sources lasers massivement accordables pour les applications t\u00e9l\u00e9com et les nouveaux capteurs. Optique [physics.optics]. INSA de Rennes, 2016. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2016ISAR0003\">&#x27E8;NNT : 2016ISAR0003&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01358722v1\">&#x27E8;tel-01358722&#x27E9;<\/a><\/li><li>Vincent Huet. \u00c9tude et r\u00e9alisation de lignes \u00e0 retard optique int\u00e9gr\u00e9es dans des micro-r\u00e9sonateurs \u00e0 modes de galerie en verres actifs dop\u00e9s erbium. Optique [physics.optics]. Universit\u00e9 de Rennes, 2015. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2015REN1S108\">&#x27E8;NNT : 2015REN1S108&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01323015v1\">&#x27E8;tel-01323015&#x27E9;<\/a><\/li><li>Trung Hien Nguyen. Theoretical and experimental study of optical solutions for analog-to-digital conversion of high bit-rate signals. Optics [physics.optics]. Universit\u00e9 de Rennes, 2015. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2015REN1S110\">&#x27E8;NNT : 2015REN1S110&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01832182v1\">&#x27E8;tel-01832182&#x27E9;<\/a><\/li><li>Thomas Quinci. Composant photovolta\u00efque innovant \u00e0 base d\u2019h\u00e9t\u00e9rojonction GaP\/Si. Optique \/ photonique. INSA de Rennes, 2015. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2015ISAR0016\">&#x27E8;NNT : 2015ISAR0016&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01276007v1\">&#x27E8;tel-01276007&#x27E9;<\/a><\/li><li>Cheng Wang. Modulation dynamics of InP-based quantum dot lasers and quantum cascade lasers. Optics [physics.optics]. INSA de Rennes, 2015. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2015ISAR0009\">&#x27E8;NNT : 2015ISAR0009&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01161855v1\">&#x27E8;tel-01161855&#x27E9;<\/a><\/li><li>Samy Almosni. Growth, structural and electro-optical properties of GaP\/Si and GaAsPN\/ GaP single junctions for lattice-matched tandem solar cells on silicon. Other [cond-mat.other]. INSA de Rennes, 2015. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2015ISAR0010\">&#x27E8;NNT : 2015ISAR0010&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01162292v1\">&#x27E8;tel-01162292&#x27E9;<\/a><\/li><li>Chahira Hajlaoui. Etude des propri\u00e9t\u00e9s structurales et \u00e9lectroniques des nanofil semiconducteurs III-V. Physique [physics]. INSA de Rennes; Institut Pr\u00e9paratoire aux Etudes Scientifiques et Techniques de Tunis, 2014. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2014ISAR0012\">&#x27E8;NNT : 2014ISAR0012&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01127341v1\">&#x27E8;tel-01127341&#x27E9;<\/a><\/li><li>Alphonse Rasoloniaina. \u00c9tudes exp\u00e9rimentales de dispositifs int\u00e9gr\u00e9s \u00e0 base de micro-r\u00e9sonateurs \u00e0 mode de galerie en verres actifs. Autre [cond-mat.other]. Universit\u00e9 de Rennes, 2014. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2014REN1S014\">&#x27E8;NNT : 2014REN1S014&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01009345v2\">&#x27E8;tel-01009345v2&#x27E9;<\/a><\/li><li>Yu Zhao. Growth and optical characterization of Sb-based materials on InP for optical telecommunication. Optics \/ Photonic. INSA de Rennes, 2014. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2014ISAR0002\">&#x27E8;NNT : 2014ISAR0002&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01083881v1\">&#x27E8;tel-01083881&#x27E9;<\/a><\/li><li>Zhenyu Hao. Caract\u00e9risations de structures \u00e0 base d'\u00eelots, b\u00e2tonnets quantiques en termes de bruit, non lin\u00e9arit\u00e9 et d'injection optique. Autre [cond-mat.other]. Universit\u00e9 de Rennes, 2013. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2013REN1S096\">&#x27E8;NNT : 2013REN1S096&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00940272v1\">&#x27E8;tel-00940272&#x27E9;<\/a><\/li><li>Thanh Tra Nguyen. Sillicon photonics based on monolithic integration of III-V nanostructures on silicon. Other [cond-mat.other]. INSA de Rennes, 2013. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2013ISAR0021\">&#x27E8;NNT : 2013ISAR0021&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01065999v1\">&#x27E8;tel-01065999&#x27E9;<\/a><\/li><li>C\u00e9dric Robert Robert. Study of III-V nanostructures on GaP for lasing emission on Si. Optics \/ Photonic. INSA de Rennes, 2013. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2013ISAR1913\">&#x27E8;NNT : 2013ISAR1913&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01082283v1\">&#x27E8;tel-01082283&#x27E9;<\/a><\/li><li>Kamil Klaime. Laser \u00e0 blocage de modes \u00e0 base de bo\u00eetes quantiques InAs\/InP pour les t\u00e9l\u00e9communications optiques. Autre [cond-mat.other]. INSA de Rennes, 2013. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2013ISAR0018\">&#x27E8;NNT : 2013ISAR0018&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00905711v1\">&#x27E8;tel-00905711&#x27E9;<\/a><\/li><li>Kenny Hey Tow. Laser Brillouin \u00e0 fibre microstructur\u00e9e en verre de chalcog\u00e9nure. Autre [cond-mat.other]. Universit\u00e9 de Rennes, 2013. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2013REN1S020\">&#x27E8;NNT : 2013REN1S020&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00823728v2\">&#x27E8;tel-00823728v2&#x27E9;<\/a><\/li><li>Aur\u00e9lie Chan Yong. Fabrication d'\u00e9l\u00e9ments optiques diffractifs par microstructuration de mat\u00e9riaux polym\u00e8res. Optique \/ photonique. T\u00e9l\u00e9com Bretagne, Universit\u00e9 de Bretagne-Sud, 2013. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00908837v1\">&#x27E8;tel-00908837&#x27E9;<\/a><\/li><li>Sy Dat Le. Traitement tout-optique du signal \u00e0 base de nouvelles fibres optiques non-lin\u00e9aires. Optique [physics.optics]. Universit\u00e9 Rennes 1, 2012. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2012REN1E013\">&#x27E8;NNT : 2012REN1E013&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-01016801v1\">&#x27E8;tel-01016801&#x27E9;<\/a><\/li><li>Kedar Sathaye. Structuring of Liquid Crystals for Optical Technologies. Optics [physics.optics]. T\u00e9l\u00e9com Bretagne, Universit\u00e9 de Bretagne-Sud, 2012. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00733302v1\">&#x27E8;tel-00733302&#x27E9;<\/a><\/li><li>Charbel Nassour. \u00c9tude des applications des micro-afficheurs pour le phototra\u00e7age massivement parall\u00e8le de structures submicroniques. Optique \/ photonique. T\u00e9l\u00e9com Bretagne, Universit\u00e9 de Bretagne-Sud, 2012. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00719635v1\">&#x27E8;tel-00719635&#x27E9;<\/a><\/li><li>Mervin Obeegadoo. Contribution au d\u00e9veloppement d'un prototype de superviseur de performance optique. Optique \/ photonique. T\u00e9l\u00e9com Bretagne, Universit\u00e9 de Bretagne-Sud, 2012. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00719666v1\">&#x27E8;tel-00719666&#x27E9;<\/a><\/li><li>Bo Hou. An optical Solution for Simultaneous in-situ Sea Water Salinity and Turbidity Measurements. Optics [physics.optics]. T\u00e9l\u00e9com Bretagne, Universit\u00e9 de Bretagne-Sud, 2012. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00719584v1\">&#x27E8;tel-00719584&#x27E9;<\/a><\/li><li>Duc Minh Nguyen. Investigations et caract\u00e9risations de \ufb01bres et guides optiques tr\u00e8s fortement non-lin\u00e9aires. Optique \/ photonique. Universit\u00e9 Rennes 1, 2011. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2011REN1E006\">&#x27E8;NNT : 2011REN1E006&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00663282v1\">&#x27E8;tel-00663282&#x27E9;<\/a><\/li><li>Quoc Thai Nguyen. \u00c9metteurs achromatiques pour le r\u00e9seau d'acc\u00e8s optique haut d\u00e9bit multiplex\u00e9 en longueurs d'onde. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2011. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2011REN1E001\">&#x27E8;NNT : 2011REN1E001&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00598529v1\">&#x27E8;tel-00598529&#x27E9;<\/a><\/li><li>Mohamed Dribek. \u00c9tude et r\u00e9alisation de nanostructures photoniques \u00e0 base de silicium poreux chimiquement fonctionnalis\u00e9 en vue d'une application biocapteur. Biophysique [physics.bio-ph]. Universit\u00e9 Rennes 1, 2010. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00576609v1\">&#x27E8;tel-00576609&#x27E9;<\/a><\/li><li>Madhoussoudhana Dontabactouny. Lasers \u00e0 blocage de modes \u00e0 base de fils et de bo\u00eetes quantiques pour les t\u00e9l\u00e9communications optiques. Physique Atomique [physics.atom-ph]. INSA de Rennes; Universit\u00e9 Europ\u00e9enne de Bretagne, 2010. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00630247v1\">&#x27E8;tel-00630247&#x27E9;<\/a><\/li><li>Stephane Trebaol. Etudes exp\u00e9rimentales des propri\u00e9t\u00e9s dispersives de structures photoniques \u00e0 base de micro-r\u00e9sonateurs pour la r\u00e9alisation de fonctions optiques. Physique [physics]. Universit\u00e9 Rennes 1, 2010. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00550001v1\">&#x27E8;tel-00550001&#x27E9;<\/a><\/li><li>Minh Nguyet Ngo. Theoretical and Experimental Studies of Semiconductor Based Photonic Devices for All-Optical Signal Processing at 40 Gbit\/s and Beyond. Engineering Sciences [physics]. Universit\u00e9 Rennes 1, 2010. English. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2010REN1E004\">&#x27E8;NNT : 2010REN1E004&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00554333v1\">&#x27E8;tel-00554333&#x27E9;<\/a><\/li><li>Quang Trung Le. Contribution \u00e0 l'\u00e9tude de fonctions optiques pour la r\u00e9g\u00e9n\u00e9ration du signal dans les syst\u00e8mes de transmission \u00e0 haut d\u00e9bit. Physique [physics]. Universit\u00e9 Rennes 1, 2010. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00568932v1\">&#x27E8;tel-00568932&#x27E9;<\/a><\/li><li>Alexandra Lagrost. G\u00e9n\u00e9ration de peignes de longueurs d'ondes \u00e0 haut d\u00e9bit pour les t\u00e9l\u00e9communications optiques.. Optique [physics.optics]. Universit\u00e9 Rennes 1, 2010. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/2010REN1E001\">&#x27E8;NNT : 2010REN1E001&#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00656651v1\">&#x27E8;tel-00656651&#x27E9;<\/a><\/li><li>Khalida Messaad. Contribution \u00e0 la conception de guides optiques \u00e0 fortes susceptibilit\u00e9s non-lin\u00e9aires d'ordre 3. Physique [physics]. Universit\u00e9 Rennes 1, 2009. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00456183v1\">&#x27E8;tel-00456183&#x27E9;<\/a><\/li><li>Jean-Fran\u00e7ois Hayau. Caract\u00e9risation de composants photoniques \u00e0 base d'\u00eelots quantiques \u00e0 semi-conducteurs InAs\/InP : bruit et injection optique. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2009. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00511839v1\">&#x27E8;tel-00511839&#x27E9;<\/a><\/li><li>Thanh Nam Nguyen. Etude de composants optiques \u00e0 base de fibres optiques non-lin\u00e9aires. Physique [physics]. Universit\u00e9 Rennes 1, 2008. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00365863v1\">&#x27E8;tel-00365863&#x27E9;<\/a><\/li><li>Laura Ghisa. Couplage de micro r\u00e9sonateurs. Applications aux fonctions optiques de traitement du signal. Physique [physics]. Universit\u00e9 Rennes 1, 2008. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00383746v1\">&#x27E8;tel-00383746&#x27E9;<\/a><\/li><li>Beno\u00eet Clouet. \u00c9tude de la dispersion modale de polarisation dans les syst\u00e8mes r\u00e9g\u00e9n\u00e9r\u00e9s optiquement. Physique [physics]. Universit\u00e9 Rennes 1, 2007. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00353460v1\">&#x27E8;tel-00353460&#x27E9;<\/a><\/li><li>Adel Najar, Lazhar Haji. AMPLIFICATION OPTIQUE DANS DES GUIDES D'ONDE EN<br \/>SILICIUM POREUX DOP\u00c9S AUX TERRES RARES. Physique [physics]. Universit\u00e9 Rennes 1, 2007. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00359643v1\">&#x27E8;tel-00359643&#x27E9;<\/a><\/li><li>Gwena\u00eblle Girault. Contribution \u00e0 l'\u00e9tude de portes optiques \u00e0 base d'amplificateurs optiques \u00e0 semi-conducteurs pour le traitement tout-optique de signaux de t\u00e9l\u00e9communication \u00e0 tr\u00e8s hauts d\u00e9bits. Physique [physics]. Universit\u00e9 Rennes 1, 2007. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00411254v1\">&#x27E8;tel-00411254&#x27E9;<\/a><\/li><li>Azar Maalouf. Contribution \u00e0 l'\u00e9tude des proc\u00e9d\u00e9s de r\u00e9alisation de circuits int\u00e9gr\u00e9s optiques en mat\u00e9riaux polym\u00e8res. Physique [physics]. Universit\u00e9 Rennes 1, 2007. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00456179v1\">&#x27E8;tel-00456179&#x27E9;<\/a><\/li><li>Olivier Vaudel. \u00c9tude de synchronisation de chaos par simple injection optique. Physique [physics]. Universit\u00e9 Rennes 1, 2007. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00411260v1\">&#x27E8;tel-00411260&#x27E9;<\/a><\/li><li>Christophe Levallois. \u00c9tude et r\u00e9alisation de lasers \u00e0 cavit\u00e9 verticale mono et multi-longueurs d'onde \u00e9mettant \u00e0 1,55 \u03bcm. Physique Atomique [physics.atom-ph]. INSA de Rennes, 2006. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00489096v1\">&#x27E8;tel-00489096&#x27E9;<\/a><\/li><li>Charles Cornet. propri\u00e9t\u00e9s \u00e9lectroniques, optiques et dynamiques de boites quantiques auto-organis\u00e9es et coupl\u00e9es sur substrat InP. Physique [physics]. INSA de Rennes, 2006. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00132644v1\">&#x27E8;tel-00132644&#x27E9;<\/a><\/li><li>S\u00e9bastien Grot. Mont\u00e9e en puissance de lasers et d'amplificateurs \u00e0 fibres dop\u00e9es Ytterbium en r\u00e9gime continu et d'impulsions. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2006. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00079671v1\">&#x27E8;tel-00079671&#x27E9;<\/a><\/li><li>Mathilde Gay. Etude th\u00e9orique et exp\u00e9rimentale de l'impact de la r\u00e9g\u00e9n\u00e9ration 2R dans un syst\u00e8me de transmission optique haut d\u00e9bit. Physique [physics]. INSA de Rennes, 2006. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00086500v1\">&#x27E8;tel-00086500&#x27E9;<\/a><\/li><li>Julien Poette. Contribution \u00e0 l'\u00e9tude du bruit d'amplitude de lasers d\u00e9di\u00e9s aux t\u00e9l\u00e9communications optiques. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2005. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00079102v2\">&#x27E8;tel-00079102&#x27E9;<\/a><\/li><li>Jean-No\u00ebl Maran. Lasers multi-longueurs d'onde \u00e0 fibre dop\u00e9e \u00e0 l'Erbium utilisant un d\u00e9caleur de fr\u00e9quence dans la boucle de contre-r\u00e9action. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1; Universit\u00e9 Laval, 2005. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00012177v1\">&#x27E8;tel-00012177&#x27E9;<\/a><\/li><li>Philippe Caroff. Croissance de bo\u00eetes quantiques d'InAs\/InP(113)B pour les applications en t\u00e9l\u00e9communications optiques. Physique [physics]. INSA de Rennes, 2005. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00011186v1\">&#x27E8;tel-00011186&#x27E9;<\/a><\/li><li>Gautier Moreau. Contribution \u00e0 la caract\u00e9risation des propri\u00e9t\u00e9s de guides planaires \u00e0 bo\u00eetes quantiques InAs\/InP(311)B \u00e9mettant \u00e0 1.55 \u00b5m. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2005. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00077577v1\">&#x27E8;tel-00077577&#x27E9;<\/a><\/li><li>Celine Guignard. R\u00e9alisation de sources impulsionnelles pour les t\u00e9l\u00e9communications. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2005. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00260197v1\">&#x27E8;tel-00260197&#x27E9;<\/a><\/li><li>Carole Arnaud. \u00c9tude de fonctions actives et\/ou passives \u00e0 base de<br \/>micro-r\u00e9sonateurs \u00e0 modes de galerie. Physique [physics]. Universit\u00e9 Rennes 1, 2004. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00121317v1\">&#x27E8;tel-00121317&#x27E9;<\/a><\/li><li>Imane Assa\u00efd. Mat\u00e9riaux et technologies de photoinscription de guides optiques en polym\u00e8re. Sciences de l'ing\u00e9nieur [physics]. Universit\u00e9 Rennes 1, 2004. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00487215v1\">&#x27E8;tel-00487215&#x27E9;<\/a><\/li><li>Elodie Le Cren. Etude de Composants Absorbants Saturables \u00e0 Semi-Conducteurs \u00e0 Multi-Puits Quantiques Dop\u00e9s au Fer pour la R\u00e9g\u00e9n\u00e9ration de Signaux Optiques \u00e0 Tr\u00e8s Hauts D\u00e9bits d'Information. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2004. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00258390v1\">&#x27E8;tel-00258390&#x27E9;<\/a><\/li><li>Vincent Roncin. Contribution \u00e0 l'\u00e9tude de fonctions optiques \u00e0 base d'amplificateurs optiques \u00e0 semi-conducteurs pour la r\u00e9g\u00e9n\u00e9ration des signaux de t\u00e9l\u00e9communication \u00e0 tr\u00e8s haut d\u00e9bit. Physique Atomique [physics.atom-ph]. Universit\u00e9 Rennes 1, 2004. Fran\u00e7ais. <a target=\"_blank\" href=\"https:\/\/www.theses.fr\/\">&#x27E8;NNT : &#x27E9;<\/a>. <a target=\"_blank\" href=\"https:\/\/theses.hal.science\/tel-00230524v1\">&#x27E8;tel-00230524&#x27E9;<\/a><\/li><\/ul><\/div><\/div><br><div class=\"grp-div\"><h3 class=\"wphal-titre-groupe\">Habilitations \u00e0 diriger des recherches<span class=\"wphal-nbmetadata\" style=\"margin-left:10px\">3 documents<\/span><\/h3><div class=\"grp-content\"><ul><li>Stephane Trebaol. Sources de lumi\u00e8re coh\u00e9rente pour le visible et le proche UV. Optique \/ photonique. Universit\u00e9 de Rennes1, 2025. <a target=\"_blank\" href=\"https:\/\/hal.science\/tel-05132922v1\">&#x27E8;tel-05132922&#x27E9;<\/a><\/li><li>Lo\u00efc Bodiou. Development of photonic integrated devices for applications spanning from the ultraviolet to the mid-infrared spectral ranges. Optics \/ Photonic. 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