Institut de Chimie Moléculaire
& des Matériaux d’OrsaY
ACCÈS

Notre adresse

Institut de Chimie Moléculaire et des Matériaux d’Orsay
Bâtiment 670, Université Paris-Saclay, UMR 8182
17 Avenue des Sciences
91400 Orsay – France

Pour venir à l’ICMMO

Situé sur le plateau de Saclay, l’ICMMO fait partie de la faculté des sciences d’Orsay. Vous pouvez venir à l’ICMMO en transports en commun ou en voiture. Voyez le plan du campus .

Par la route

En venant de Paris, deux possibilités :

  • Paris-Ouest : à la porte de Saint-Cloud prendre la N118, direction Chartres-Orléans, sortie 9, Centre Universitaire-Grandes Ecoles – Orsay-Le Guichet. Puis au rond-point, prendre la 2nde sortie Rue Louis de Broglie et tourner à droite sur l’Avenue des Sciences.
  • Paris-Sud : à partir de la Porte d’Orléans prendre l’autoroute A10 direction Bordeaux-Nantes, puis Chartres-Orléans, sortie Orsay-Bures. Emprunter la N118 jusqu’à la sortie 9, Centre Universitaire-Grandes Ecoles – Gif sur Yvette. Puis au rond-point, 1ère sortie Centre universitaire et au second rond-point, prendre la 3eme sortie Rue Louis de Broglie et tourner à droite sur l’Avenue des Sciences.

Pour le stationnement voir ici .

Par les transports en commun

Prendre le RER ligne B en direction de Saint-Rémy-les-Chevreuse, descendre à la station Le Guichet puis prendre le bus 4609 ou descendre à la station Orsay puis prendre le bus 4607 à Gare d’Orsay – l’Yvette.

Institut de Chimie Moléculaire et des Matériaux d Orsay
Bat 670
17 Av. des Sciences
91190 Orsay

Bertrand Poumellec

bertrand.poumellec@-Code to remove to avoid SPAM-universite-paris-saclay.fr
0169156351, bureau 3325

Article dans une revue

2026

ref_biblio
Ruyue Que, Olivier Plantevin, Matthieu Lancry, Bertrand Poumellec. Strategy for steganography and information encryption–decryption using Fs laser-created luminescence in organic solids. Physical Chemistry Chemical Physics, 2026, 28 (4), pp.3109-3116. ⟨10.1039/d5cp02244d⟩. ⟨hal-05505730⟩
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BibTex

2025

ref_biblio
Imane Ktafi, Maxime Cavillon, Matthieu Lancry, Bertrand Poumellec. Relation between porosity‐based and crystal‐based femtosecond laser‐induced nanogratings in oxide glasses. International Journal of Applied Glass Science, 2025, 17 (1), ⟨10.1111/ijag.70013⟩. ⟨hal-05505726⟩
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ref_biblio
Bertrand Poumellec, Ruyue Que. Thermal Limitations in Ultrafast Laser Direct Writings in Dielectric Solids. Micromachines, 2025, 16 (9), pp.970. ⟨10.3390/mi16090970⟩. ⟨hal-05505711⟩
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2024

ref_biblio
Imane Ktafi, Jing Kong, Maxime Cavillon, Bertrand Poumellec, Maureen Yembele, et al.. A New Approach Toward Extreme Thermal Stability of Femtosecond Laser Induced Modifications in Glasses. Laser and Photonics Reviews, 2024, 19 (3), pp.2401086. ⟨10.1002/lpor.202401086⟩. ⟨hal-05466533⟩
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https://hal.science/hal-05466533/file/2024-Laser%20Photonics%20Reviews%20-%20Ktafi%20-%20A%20New%20Approach%20Toward%20Extreme%20Thermal%20Stability%20of%20Femtosecond%20Laser%20Induced.pdf BibTex
ref_biblio
Imane Ktafi, Matthieu Lancry, Marc Dussauze, Bertrand Poumellec, Yasuhiko Shimotsuma, et al.. Crystalline / glass nanoscale chemical separation induced by femtosecond laser pulses in aluminosilicate glass. Optical Materials, 2024, 150, pp.115294. ⟨10.1016/j.optmat.2024.115294⟩. ⟨hal-04665443⟩
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https://hal.science/hal-04665443/file/Ktafi%20et%20al.%20manuscript_revised%20version%202.pdf BibTex
ref_biblio
Ruyue Que, Jean-Frédéric Audibert, Enrique Garcia-Caurel, Olivier Plantevin, Kyriacos Kalli, et al.. Carbon Dot Synthesis in CYTOP Optical Fiber Using IR Femtosecond Laser Direct Writing and Its Luminescence Properties. Nanomaterials, 2024, 14 (11), pp.941. ⟨10.3390/nano14110941⟩. ⟨hal-04769240⟩
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https://hal.science/hal-04769240/file/nanomaterials-14-00941-v2.pdf BibTex
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Ruyue Que, Enrique Garcia-Caurel, Kyriacos Kalli, Robert Pansu, Jean-Frédérique Audibert, et al.. Optical properties of fs laser-created sphere inside CYTOP fiber by Mueller polarimetry. Optics Letters, 2024, 49 (12), pp.3284. ⟨10.1364/OL.519955⟩. ⟨hal-05466523⟩
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https://hal.science/hal-05466523/file/manuscript-CYTOP-revised-highlights-6mai2024-final-RY2-withSI-clean.pdf BibTex
ref_biblio
Ruyue Que, Matthieu Lancry, Maxime Cavillon, Bertrand Poumellec. How to Crystallize Glass with a Femtosecond Laser. Crystals, 2024, 14 (7), pp.606. ⟨10.3390/cryst14070606⟩. ⟨hal-05466525⟩
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https://hal.science/hal-05466525/file/2024-MDPI-crystals-14-00606.pdf BibTex
ref_biblio
Ruyue Que, Matthieu Lancry, Bertrand Poumellec. Usable Analytical Expressions for Temperature Distribution Induced by Ultrafast Laser Pulses in Dielectric Solids. Micromachines, 2024, 15 (2), pp.0019. ⟨10.3390/mi15020196⟩. ⟨hal-04424108⟩
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https://hal.science/hal-04424108/file/micromachines-15-00196.pdf BibTex
ref_biblio
Ruyue Que, Jean-Frédéric Audibert, Enrique Garcia-Caurel, Olivier Plantevin, Kyriacos Kalli, et al.. Carbon Dot Synthesis in CYTOP Optical Fiber Using IR Femtosecond Laser Direct Writing and Its Luminescence Properties. Nanomaterials, 2024, 14 (12), pp.3284. ⟨10.3390/nano14110941⟩. ⟨hal-05466522⟩
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https://hal.science/hal-05466522/file/2024-CYTOP-nanomaterials-14-00941-v2.pdf BibTex
ref_biblio
Qiong Xie, Maxime Cavillon, Bertrand Poumellec, Matthieu Lancry. Lifespan prediction procedure of volume nanogratings imprinted by femtosecond laser in optical glasses. Ceramics International, 2024, 50 (11), pp.20303-20312. ⟨10.1016/j.ceramint.2024.03.153⟩. ⟨hal-05466515⟩
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https://hal.science/hal-05466515/file/2024-master-curve-Qiong-1-s2.0-S0272884224010988-main.pdf BibTex

2023

ref_biblio
Jiafeng Lu, Mostafa Hassan, François Courvoisier, Enrique Garcia-Caurel, François Brisset, et al.. 3D structured Bessel beam polarization and its application to imprint chiral optical properties in silica. APL Photonics, 2023, 8, pp.060801 (1-10). ⟨10.1063/5.0140843⟩. ⟨hal-04258244⟩
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https://hal.science/hal-04258244/file/b2f15adf-01ee-42ca-8741-8430d96b3ff4-author.pdf BibTex
ref_biblio
Jiafeng Lu, Jing Tian, Bertrand Poumellec, Enrique Garcia-Caurel, Razvigor Ossikovski, et al.. Tailoring chiral optical properties by femtosecond laser direct writing in silica. Light: Science and Applications, 2023, 12, ⟨10.1038/s41377-023-01080-y⟩. ⟨hal-04480694⟩
Accès au texte intégral et bibtex
https://polytechnique.hal.science/hal-04480694/file/Tailoring%20chiral%20optical%20properties%20by%20femtosecond_Published.pdf BibTex
ref_biblio
Jiafeng Lu, Enrique Garcia-Caurel, Razvigor Ossikovski, François Courvoisier, Xianglong Zeng, et al.. Femtosecond laser direct writing multilayer chiral waveplates with minimal linear birefringence. Optics Letters, 2023, 48 (2), pp.271-274. ⟨10.1364/OL.479447⟩. ⟨hal-04261093⟩
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https://hal.science/hal-04261093/file/f67584b9-f961-46b0-a1d3-b08eab6201e2-author.pdf BibTex
ref_biblio
Qiong Xie, Nadezhda Shchedrina, Maxime Cavillon, Bertrand Poumellec, Matthieu Lancry. Nanoscale investigations of femtosecond laser induced nanogratings in optical glasses. Nanoscale Advances, 2023, 6 (2), pp.489-498. ⟨10.1039/d3na00748k⟩. ⟨hal-05466513⟩
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https://hal.science/hal-05466513/file/d3na00748k.pdf BibTex
ref_biblio
Heng Yao, Qiong Xie, Maxime Cavillon, Daniel R. Neuville, Diego Pugliese, et al.. Volume nanogratings inscribed by ultrafast IR laser in alumino-borosilicate glasses. Optics Express, 2023, 31 (10), pp.15449. ⟨10.1364/OE.488249⟩. ⟨hal-04264004⟩
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https://hal.science/hal-04264004/file/oe-31-10-15449.pdf BibTex
ref_biblio
Rayan Zaiter, Matthieu Lancry, Alexandre Fargues, Frédéric Adamietz, Marc Dussauze, et al.. Optical and structural characterization of femtosecond laser written micro-structures in germanate glass. Scientific Reports, 2023, 13 (1), pp.11050. ⟨10.1038/s41598-023-35730-3⟩. ⟨hal-04164824⟩
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https://hal.science/hal-04164824/file/2023-076.pdf BibTex

2022

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Julien Ari, Maxime Cavillon, Olivier Plantevin, Matthieu Lancry, Bertrand Poumellec. Europium spectroscopic properties impacted by femtosecond laser 3D nanostructuring in lithium niobium borosilicate glasses. Optical Materials: X, 2022, 16, pp.100198. ⟨10.1016/j.omx.2022.100198⟩. ⟨hal-04287703⟩
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https://hal.science/hal-04287703/file/1-s2.0-S2590147822000626-main-1.pdf BibTex
ref_biblio
Thierry Cardinal, Matthieu Lancry, Lionel Canioni, Bertrand Poumellec, Wilfried Blanc. Fonctionnaliser le verre pour de nouvelles propriétés optiques. Reflets de la Physique, 2022, 74, pp.70-75. ⟨10.1051/refdp/202274070⟩. ⟨hal-03958637⟩
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https://hal.science/hal-03958637/file/2022-148.pdf BibTex
ref_biblio
Maxime Cavillon, Jing Cao, Maxime Vallet, François Brisset, Léo Mazerolles, et al.. Thermal and Electron Plasma Effects on Phase Separation Dynamics Induced by Ultrashort Laser Pulses. Crystals, 2022, 12 (4), pp.496. ⟨10.3390/cryst12040496⟩. ⟨hal-03721179⟩
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ref_biblio
Pierre Delullier, Laurent Calvez, Guillaume Druart, Florence de La Barrière, Christophe Humbert, et al.. Photosensitivity of Infrared Glasses under Femtosecond Laser Direct Writing for mid-IR Applications. Applied Sciences, 2022, 12 (17), pp.8813. ⟨10.3390/app12178813⟩. ⟨hal-03771407⟩
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https://hal.science/hal-03771407/file/applsci-12-08813.pdf BibTex
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Ruyue Que, Ludivine Houel-Renault, Mébarek Temagoult, Christian Herrero, Matthieu Lancry, et al.. Space-selective creation of photonics functions in a new organic material: Femtosecond laser direct writing in Zeonex glass of refractive index change and photoluminescence. Optical Materials, 2022, 133, pp.112651. ⟨10.1016/j.optmat.2022.112651⟩. ⟨hal-04120211⟩
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Yitao Wang, Maxime Cavillon, John Ballato, Thomas Hawkins, Tino Elsmann, et al.. 3D laser engineering of molten core optical fibers: toward a new generation of harsh environment sensing devices. Advanced Optical Materials, 2022, 10 (18), pp.2200379. ⟨10.1002/adom.202200379⟩. ⟨hal-04125496⟩
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https://hal.science/hal-04125496/file/WanCavBaetal22.pdf BibTex
ref_biblio
Heng Yao, Rayan Zaiter, Maxime Cavillon, Pierre Delullier, Bo Lu, et al.. Formation of nanogratings driven by ultrafast laser irradiation in mid-IR heavy oxide glasses. Ceramics International, 2022, 48 (21), pp.31363-31369. ⟨10.1016/j.ceramint.2022.07.012⟩. ⟨hal-03821399⟩
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https://hal.science/hal-03821399/file/2022-126.pdf BibTex

2021

ref_biblio
Elisa Muzi, Maxime Cavillon, Matthieu Lancry, François Brisset, Ruyue Que, et al.. Towards a Rationalization of Ultrafast Laser-Induced Crystallization in Lithium Niobium Borosilicate Glasses: The Key Role of the Scanning Speed. Crystals, 2021, 11, ⟨10.3390/cryst11030290⟩. ⟨hal-03418516⟩
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https://hal.science/hal-03418516/file/crystals-11-00290-v3.pdf BibTex
ref_biblio
Elisa Muzi, Maxime Cavillon, Matthieu Lancry, François Brisset, Benjamin Sapaly, et al.. Polarization-oriented LiNbO3 nanocrystals by femtosecond laser irradiation in LiO2–Nb2O5–SiO2–B2O3 glasses. Optical Materials Express, 2021, 11 (4), pp.1313-1320. ⟨10.1364/ome.417461⟩. ⟨hal-03418512⟩
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https://hal.science/hal-03418512/file/Elisa%20orientation%202021.pdf BibTex
ref_biblio
Yitao Wang, Maxime Cavillon, Nadège Ollier, Bertrand Poumellec, Matthieu Lancry. An overview of the thermal erasure mechanisms of femtosecond laser induced nanogratings in silica glass. Physica Status Solidi A (applications and materials science), 2021, 218, pp.2100023. ⟨10.1002/pssa.202100023⟩. ⟨hal-03418493⟩
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https://hal.science/hal-03418493/file/erasure%20silice%20nanogratings%20Yitao%2015-3-21.pdf BibTex
ref_biblio
Heng Yao, Rayan Zaiter, Maxime Cavillon, Benjamin Sapaly, Thierry Cardinal, et al.. Photosensitivity of barium germano-gallate Glasses Under Femtosecond Laser Writing for Mid-IR Applications. Ceramics International, 2021, ⟨10.1364/OL.99.099999⟩. ⟨hal-03418506⟩
Accès au texte intégral et bibtex
https://hal.science/hal-03418506/file/BGG_Type%20I_Correction-v8-accepted-BP.pdf BibTex

2020

ref_biblio
Maxime Cavillon, Yitao Wang, Bertrand Poumellec, François Brisset, Matthieu Lancry. Erasure of nanopores in silicate glasses induced by femtosecond laser irradiation in the Type II regime. Applied physics. A, Materials science & processing, 2020, 126, ⟨10.1007/s00339-020-04062-8⟩. ⟨hal-03093803⟩
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https://hal.science/hal-03093803/file/Cavillon%20et%20al.%20Applied%20Physics%20A%20submission%20revised%20version%20v1%20BP.pdf BibTex
ref_biblio
Xuan He, Qiming Liu, Matthieu Lancry, François Brisset, Bertrand Poumellec. Space-Selective Control of Functional Crystals by Femtosecond Laser: A Comparison between SrO-TiO2-SiO2 and Li2O-Nb2O5-SiO2 Glasses. Crystals, 2020, Laser-Induced Crystallization, 10, pp.979. ⟨10.3390/cryst10110979⟩. ⟨hal-03093877⟩
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https://hal.science/hal-03093877/file/crystals-10-00979.pdf BibTex
ref_biblio
Jing Tian, Heng Yao, Maxime Cavillon, Enric Garcia-Caurel, Razvigor Ossikovski, et al.. A Comparison between Nanogratings-Based and Stress-Engineered Waveplates Written by Femtosecond Laser in Silica. Micromachines, 2020, 11 (2), pp.131. ⟨10.3390/mi11020131⟩. ⟨hal-03094005⟩
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https://hal.science/hal-03094005/file/Tian%20micromachines-11-00131-v5.pdf BibTex
ref_biblio
Yitao Wang, Shuen Wei, Miss R. Cicconi, Yuta Tsuji, Masahiro Shimizu, et al.. Femtosecond laser direct writing in SiO 2 ‐Al 2 O 3 binary glasses and thermal stability of Type II permanent modifications. Journal of the American Ceramic Society, 2020, 103 (8), pp.4286-4294. ⟨10.1111/jace.17164⟩. ⟨hal-03093307⟩
Accès au texte intégral et bibtex
https://hal.science/hal-03093307/file/preprint%20alumino%20%20write%20and%20stab%20Yitao%202020.pdf BibTex
ref_biblio
Shu-En Wei, Yitao Wang, Heng Yao, Maxime Cavillon, Bertrand Poumellec, et al.. Thermal Stability of Type II Modifications by IR Femtosecond Laser in Silica-based Glasses. Sensors, 2020, 20, ⟨10.3390/s20030762⟩. ⟨hal-03093943⟩
Accès au texte intégral et bibtex
https://hal.science/hal-03093943/file/Wei%20sensors-20-00762-v3.pdf BibTex

2019

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B Hari Babu, Mengsi Niu, Thomas Billotte, D P Aldeiturriaga, Bertrand Poumellec, et al.. Direct writing of low-loss birefringent laser waveguides in Nd 3+ , Y 3+ codoped SrF 2 crystal by ultrafast laser. Applied optics, 2019. ⟨hal-02354529⟩
Accès au texte intégral et bibtex
https://hal.science/hal-02354529/file/B.%20Hari%20Babu%20and%20M.%20Lancry%20version%20HAL%20BP.pdf BibTex
ref_biblio
Jing Cao, Matthieu Lancry, Francois Brisset, Leo Mazerolles, Romuald Saint-Martin, et al.. Femtosecond Laser-Induced Crystallization in Glasses: Growth Dynamics for Orientable Nanostructure and Nanocrystallization. Crystal Growth & Design, 2019, 19 (4), pp.2189-2205. ⟨10.1021/acs.cgd.8b01802⟩. ⟨hal-02367880⟩
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https://hal.science/hal-02367880/file/Crystal%20Growth%20%26%20Design%20Version%202%20-%20cg-2018-01802a.pdf BibTex
ref_biblio
Maxime Cavillon, Matthieu Lancry, Bertrand Poumellec, Yitao Wang, John Canning, et al.. Overview of High Temperature Fibre Bragg Gratings and Potential Improvement Using Highly Doped Aluminosilicate Glass Optical Fibres. Journal of Physics: Photonics, 2019, ⟨10.1088/2515-7647/ab382f⟩. ⟨hal-02354552⟩
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https://hal.science/hal-02354552/file/Cavillon%20IOP%20draft%20revised%20final%20version.pdf BibTex
ref_biblio
Maxime Cavillon, Matthieu Lancry, Bertrand Poumellec, Yitao Wang, John Canning, et al.. Overview of high temperature fibre Bragg gratings and potential improvement using highly doped aluminosilicate glass optical fibres. Journal of Physics: Photonics, 2019, 1 (4), pp.042001. ⟨10.1088/2515-7647/ab382f⟩. ⟨hal-03039271⟩
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B. Hari Babu, Chengkun Lyu, Thomas Billotte, D. Pallares-Aldeiturriaga, Bertrand Poumellec, et al.. Stress-induced optical waveguides written by an ultrafast laser in Nd 3+ , Y 3+ co-doped SrF 2 crystals. Applied optics, 2019, 58 (4), pp.984. ⟨10.1364/AO.58.000984⟩. ⟨hal-03039267⟩
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ref_biblio
B. Hari Babu, Chengkun Lyu, Thomas Billotte, D. Pallares-Aldeiturriaga, Bertrand Poumellec, et al.. Stress-induced optical waveguides written by an ultrafast laser in Nd 3+ , Y 3+ co-doped SrF 2 crystals. Applied optics, 2019, 58 (4), pp.984. ⟨10.1364/ao.58.000984⟩. ⟨hal-02371165⟩
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ref_biblio
Jing Tian, Rubing Li, Sang Hyuk Yoo, Bertrand Poumellec, Enric Garcia-Caurel, et al.. Spectral dependence of femtosecond laser induced circular optical properties in silica. OSA Continuum, 2019, 2 (4), pp.1233. ⟨10.1364/OSAC.2.001233⟩. ⟨hal-02354006⟩
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https://hal.science/hal-02354006/file/Papier-Mueller-Horiba-revised2-BP2%20version%20HAL.pdf BibTex

2018

ref_biblio
Jing Cao, Bertrand Poumellec, Francois Brisset, Matthieu Lancry. Pulse energy dependence of refractive index change in lithium niobium silicate glass during femtosecond laser direct writing. Optics Express, 2018, 26 (6), pp.7460. ⟨10.1364/oe.26.007460⟩. ⟨hal-02371176⟩
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Matthieu Lancry, Nadège Ollier, B. Babu, Christian Herrero, Bertrand Poumellec. EPR reversible signature of self-trapped holes in fictive temperature-treated silica glass. Journal of Applied Physics, 2018, 123 (11), pp.113101. ⟨10.1063/1.5023310⟩. ⟨hal-02371171⟩
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2016

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B. Hari Babu, Matthieu Lancry, Nadege Ollier, Hicham El Hamzaoui, Mohamed Bouazaoui, et al.. Radiation hardening of sol gel-derived silica fiber preforms through fictive temperature reduction. Applied optics, 2016, 55 (27), pp.7455. ⟨10.1364/AO.55.007455⟩. ⟨hal-01362681⟩
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B. Hari Babu, Nadege Ollier, Inna Savelli, Hicham El Hamzaoui, A. Pastouret, et al.. Study of radiation effects on Er$^{3+}$-doped nanoparticles germano-silica fibers. Journal of Lightwave Technology, 2016, 34 (21), pp.4981. ⟨10.1109/JLT.2016.2599173⟩. ⟨hal-01404495⟩
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https://hal.science/hal-01404495/file/Babu.pdf BibTex
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Jing Cao, Bertrand Poumellec, Leo Mazerolles, Francois Brisset, Anne-Laure Helbert, et al.. Nanoscale Phase Separation in Lithium Niobium Silicate Glass by Femtosecond Laser Irradiation. Journal of the American Ceramic Society, 2016, 100, pp.115-124. ⟨10.1111/jace.14570⟩. ⟨cea-01435967⟩
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ref_biblio
B. Hari Babu, Matthieu Lancry, Nadege Ollier, Hicham El Hamzaoui, Mohamed Bouazaoui, et al.. Radiation hardening of sol gel-derived silica fiber preforms through fictive temperature reduction. 2016, ⟨10.1364/AO.55.007455⟩. ⟨hal-01362679⟩
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M. León, M. Lancry, N. Ollier, B. H. Babu, L. Bigot, et al.. Ge- and Al-related point defects generated by gamma irradiation in nanostructured erbium-doped optical fiber preforms. Journal of Materials Science, 2016, 51, pp.10245-10261. ⟨10.1007/s10853-016-0253-5⟩. ⟨hal-01358319⟩
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Bertrand Poumellec, Matthieu Lancry, R. Desmarchelier, Eveline Hervé, Bernard Bourguignon. Parity violation in chiral structure creation under femtosecond laser irradiation in silica glass?. Light: Science and Applications, 2016, 5, pp.e16178. ⟨10.1038/lsa.2016.178⟩. ⟨hal-01426009⟩
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https://hal.sorbonne-universite.fr/hal-01426009/file/lsa2016178a.pdf BibTex

2015

ref_biblio
B. Hari Babu, Nadège Ollier, Monicà Léon-Pichel, Hicham El Hamzaoui, Bertrand Poumellec, et al.. Radiation hardening in sol-gel derived Er3+-doped silica glasses. Journal of Applied Physics, 2015, 118, pp.123107. ⟨10.1063/1.4932018⟩. ⟨hal-01207396⟩
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2013

ref_biblio
Bertrand Poumellec, M. Lancry, R. Desmarchelier, Eveline Hervé, François Brisset, et al.. Asymmetric orientational writing in glass with femtosecond laser irradiation. Optical Materials Express, 2013, 3, pp.1586-1599. ⟨10.1364/OME.3.001586⟩. ⟨hal-00926558⟩
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https://minesparis-psl.hal.science/hal-00926558/file/Poumellec-Lancry-Herve_Optical_mat_express_2013_1586-1599.pdf BibTex

2012

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Matthieu Lancry, Elise Régnier, Bertrand Poumellec. Fictive temperature in silica-based glasses and its application to optical fiber manufacturing. Progress in Materials Science, 2012, 57 (1), pp.63-94. ⟨10.1016/j.pmatsci.2011.05.002⟩. ⟨hal-04732976⟩
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2009

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Artem Malakho, Marc Dussauze, Evelyne Fargin, Olivier Bidault, Vincent Rodriguez, et al.. Effect of sodium to barium substitution on the space charge implementation in thermally poled glasses for nonlinear optical applications. Journal of Solid State Chemistry, 2009, 182 (5), pp.1156-1163. ⟨10.1016/j.jssc.2009.02.016⟩. ⟨hal-00381987⟩
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2006

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Matthieu Lancry, Pierre Niay, Marc Douay, Christophe Depecker, Patrick Cordier, et al.. Isochronal annealing of BG written either in H2 loated, UV hypersentized or in OH flooded standard telecommunication fibers using ArF laser. Journal of Lightwave Technology, 2006, 24 (3), pp.1376-1386. ⟨10.1109/JLT.2005.863287⟩. ⟨hal-00125060⟩
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Q. Liu, B. Poumellec, R. Blum, Gabriel Girard, J.E. Bourree, et al.. Stability of electron-beam poling in N or Ge doped H : SiO2 films. Applied Physics Letters, 2006, 88, pp.241919. ⟨hal-00125055⟩
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B. Poumellec, I. Riant, C. Tessier-Lescourret. Precise life-time prediction using demarcation energy approximation for distributed activation energy reaction. Journal of Physics: Condensed Matter, 2006, 18, pp.2199-2216. ⟨hal-00125053⟩
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2005

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Qiming Liu, Bertrand Poumellec, Delfin Braga, Guy Blaise, Yitao Ren, et al.. The change of electric field and of some other insulating properties during isochronal annealing in thermally poled Ge-doped silica films. Applied Physics Letters, 2005, 87 (12), pp.1-3. ⟨10.1063/1.2053361⟩. ⟨hal-04897137⟩
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Q. Liu, B. Poumellec, C. Haut, D. Dragoe, R. Blum, et al.. Electron-beam poling in undoped, N- or Ge-doped MDECR H:SiO2 films. Applied physics. A, Materials science & processing, 2005, 81 (6), pp.1213-1219. ⟨10.1007/s00339-005-3311-4⟩. ⟨hal-04897178⟩
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2004

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D. Braga, B. Poumellec, V. Cannas, G. Blaise, Y. Ren, et al.. Secondary electron emission yield on poled silica based thick films. Journal of Applied Physics, 2004, 96 (1), pp.885-894. ⟨10.1063/1.1758315⟩. ⟨hal-04897238⟩
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A. S. Jacqueline, B. Poumellec, J. C. Chervin, S. Garcia-Blanco, S. Esnouf. Raman investigation of structural changes induced by e-beam irradiation in Ge doped silica MCVD glasses. Materials Science and Engineering: B, 2004, 107, pp.46. ⟨hal-00077939⟩
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2003

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B. Poumellec, M. Douay, J-C. Krupa, J. Garapon, P. Niay. Comparison of UV optical absorption and UV excited luminescence behaviours in Ge doped silica under H$_2$ loading or CW UV laser irradiation. Journal of Non-Crystalline Solids, 2003, 317, pp.319-334. ⟨in2p3-00012606⟩
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Bertrand Poumellec, Lionel Sudrie, Michel A. Franco, Bernard Prade, André Mysyrowicz. Femtosecond laser irradiation stress induced in pure silica. Optics Express, 2003, 11 (9), pp.1070-1079. ⟨hal-00463650⟩
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1998

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B. Poumellec, V. Kraizman, Y. Aifa, Robert Cortès, A. Novakovich, et al.. Experimental and theoretical studies of dipole and quadrupole contributions to the vanadium K -edge XANES for VOPO 4 ⋅ 2 H 2 O xerogel. Physical Review B, 1998, 58 (10), pp.6133-6146. ⟨10.1103/PhysRevB.58.6133⟩. ⟨hal-04326772⟩
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1997

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B. Poumellec, T. Taunay, P. Bernage, Robert Cortes, J.C. Krupa. Defect population in silica glasses studied by luminescence VUV excitation spectroscopy. Journal of Luminescence, 1997, 72-74, pp.442-445. ⟨10.1016/S0022-2313(96)00042-7⟩. ⟨in2p3-00000300⟩
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1996

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B. Poumellec, F. Kherbouche. The Photorefractive Bragg Gratings in the Fibers for Telecommunications. Journal de Physique III, 1996, 6 (12), pp.1595-1624. ⟨10.1051/jp3:1996204⟩. ⟨jpa-00249547⟩
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1995

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B. Poumellec, Robert Cortés, J. Berthon. Surface orientation effect in total electron yield on TiO2. Physica B: Condensed Matter, 1995, 208-209, pp.81-83. ⟨10.1016/0921-4526(94)00824-F⟩. ⟨hal-04428797⟩
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1994

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B. Poumellec, A. Traverse, S. Artigaud, J. Hervo. Germanium implantation into substrates for integrated optics. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 1994, 86, pp.279-287. ⟨in2p3-00000673⟩
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B. Poumellec, Robert Cortés, E. Loisy, J. Berthon. Polarization dependence of the V K edge in VO 2 through the phase transition at 68 °C. physica status solidi (b), 1994, 183 (1), pp.335-350. ⟨10.1002/pssb.2221830129⟩. ⟨hal-04492175⟩
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1993

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B. Poumellec, Robert Cortes, C. Sanchez, J. Berthon, C. Fretigny. Polarized XANES and EXAFS at the V K-edge of VOPO4 · 2H2O gel, comparison with the V K-edge in V2O5 xerogel. Journal of Physics and Chemistry of Solids, 1993, 54 (6), pp.751-763. ⟨10.1016/0022-3697(93)90137-G⟩. ⟨hal-04522761⟩
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1992

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B. Poumellec, Robert Cortès, S. Labdi, H. Raffy, B. Roas, et al.. Comparative Study of the Polarized XANES at the Cu K Edge of Bi2Sr2Ca1Cu2O8, Bi2Sr2Ca2Cu3O10, and Y1Ba2Cu3O7 Thin Films. physica status solidi (b), 1992, 170 (2), pp.653-673. ⟨10.1002/pssb.2221700231⟩. ⟨hal-04174026⟩
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1991

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Corinne Legros-Glédel, Jean-Francis Marucco, Eric Vincent, Dorothée Favrot, Bertrand Poumellec, et al.. Influence of the oxygen content on the critical temperature Tc and the thermopower of Y0.7Ca0.3Ba2Cu3Oz. Physica C: Superconductivity and its Applications, 1991, 175 (3-4), pp.279-284. ⟨10.1016/0921-4534(91)90598-S⟩. ⟨hal-04899249⟩
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B. Poumellec, Robert Cortès, G. Tourillon, J. Berthon. Angular Dependence of the Ti K Edge in Rutile TiO 2. physica status solidi (b), 1991, 164 (1), pp.319-326. ⟨10.1002/pssb.2221640135⟩. ⟨hal-04883619⟩
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1989

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F. Picard-Lagnel, B. Poumellec, Robert Cortes. Study of amorphous thin films of (Ti, Nb)O2 solid solutions by X-ray absorption at the Ti K edge. Journal of Physics and Chemistry of Solids, 1989, 50 (12), pp.1211-1220. ⟨10.1016/0022-3697(89)90392-2⟩. ⟨hal-04609441⟩
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B. Poumellec, Robert Cortès, F. Lagnel, G. Tourillon. A new method to extract the X-ray absorption fine structures from the reflectivity spectra : application to the study of (Ti, Nb) O2 amorphous solid solutions. Physica B: Condensed Matter, 1989, 158 (1-3), pp.282-283. ⟨10.1016/0921-4526(89)90286-X⟩. ⟨hal-04609460⟩
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B. Poumellec, Robert Cortés. JOGGING 2 – a second version enabling the extraction of the absorption from the X-ray reflectivity spectra. Journal of Applied Crystallography, 1989, 22 (3), pp.295-295. ⟨10.1107/S0021889889000506⟩. ⟨hal-04592881⟩
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1988

ref_biblio
B. Poumellec, Robert Cortès, F. Marcelet. JOGGING – programs to add, shape, smooth and differentiate X-ray absorption spectra. Journal of Applied Crystallography, 1988, 21 (2), pp.209. ⟨10.1107/S0021889887011166⟩. ⟨hal-04625904⟩
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1986

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B. Poumellec, J. Marucco, B. Touzelin. XANES COMPARATIVE STUDY OF RUTILE SOLID SOLUTIONS : (Ti,V)O2, (Ti,Nb)O2 AND (Ti,Ta)O2. Journal de Physique Colloques, 1986, 47 (C8), pp.C8-709-C8-712. ⟨10.1051/jphyscol:19868133⟩. ⟨jpa-00226033⟩
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B. Poumellec, J. Marucco, B. Calès, B. Touzelin. THERMODYNAMIC, SPECTROSCOPIC, X-RAY, ELECTRONIC AND MAGNETIC STUDY OF (Ti1-xNbx)O2 SOLID SOLUTIONS VERSUS TEMPERATURE AND COMPOSITION. Journal de Physique Colloques, 1986, 47 (C1), pp.C1-825-C1-829. ⟨10.1051/jphyscol:19861126⟩. ⟨jpa-00225523⟩
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Communication dans un congrès

2023

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Mostafa Hassan, Jiafeng Lu, Bertrand Poumellec, Matthieu Lancry, François Courvoisier. Writing chiral nanostructures inside silica with polarization-engineered Bessel beams. Conference on Lasers and Electro-Optics/Europe and the European Quantum Electronics Conference, Jun 2023, Munich, Germany. ⟨10.1109/CLEO/EUROPE-EQEC57999.2023.10231980⟩. ⟨hal-04283527⟩
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2020

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Maxime Cavillon, Elisa Muzi, Matthieu Lancry, Benjamin Sapaly, D Janner, et al.. Spatially-Controlled Second Harmonic Generation in Lithium Niobate Silicate and Borosilicate Glasses. Bragg Gratings Photosensitivity and poling in waveguides and materials, Jul 2020, Montréal (virtuel), Canada. ⟨hal-03093910⟩
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https://hal.science/hal-03093910/file/BGPP%20Montreal%20final%20draft%20MC%20BP%20pour%20charm3at.pdf BibTex
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Bertrand Poumellec, Jing Cao, Matthieu Lancry. Three Dimensional Writing of Material Functions by femtosecond laser: Science and Technology. Laser Precision Machining, Jun 2020, Berlin, Germany. ⟨hal-03093820⟩
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2018

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Matthieu Lancry, Nadège Ollier, Christian Herrero, Bertrand Poumellec. Temperature reversible Self-Trapped Holes in fictive temperature-treated silica. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials, 2018, Zurich, France. pp.JTu2A.5, ⟨10.1364/bgppm.2018.jtu2a.5⟩. ⟨hal-02371183⟩
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M. Lancry, K. Cook, D. Pallarés-Aldeiturriaga, J.M. Lopez-Higuera, B. Poumellec, et al.. Raman spectroscopic study of Bragg gratings regeneration. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials 2018, Jul 2018, Zurich, Switzerland. pp.BM2A.4, ⟨10.1364/bgppm.2018.bm2a.4⟩. ⟨hal-02371189⟩
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D. Pallarés-Aldeiturriaga, L. Rodriguez-Cobo, M. Lancry, B. Poumellec, J.M. Lopez-Higuera. Mach-Zehnder interferometer based on femtosecond laser waveguide inscription. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials, 2018, Zurich, France. pp.JTu2A.4, ⟨10.1364/bgppm.2018.jtu2a.4⟩. ⟨hal-02371180⟩
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J. Tian, M. Lancry, S.H. Yoo, E. Garcia-Caurel, R. Ossikovski, et al.. Evidence by Mueller spectropolarimetry of optical rotation imprinted by femtosecond laser in silica. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials, 2018, Zurich, France. pp.BW1A.2, ⟨10.1364/bgppm.2018.bw1a.2⟩. ⟨hal-02371182⟩
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2012

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Serge Tsyier, Audrey Millaud, Thierry Lopez, Ihsan Fsaifes, Yves Jaouën, et al.. Profile amplitude measurement and phase shifts localization in fiber Bragg grating using UV-induced blue luminescence. CLEO’12, May 2012, San José, United States. ⟨hal-02288325⟩
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Chapitre d’ouvrage

2017

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Thierry Cardinal, Mathieu Lancry, Evelyne Fargin, Yannick Petit, Marc Dussauze, et al.. Glass-ceramics for engineering optical properties and nonlinear optics for engineering glass ceramics. Neuville Daniel R.; Cormier Laurent; Caurant Daniel; Montagne Lionel. From glass to crystal, EDP Sciences, pp.441-457, 2017, 978-2-7598-1783-2. ⟨10.1051/978-2-7598-1997-3.c026⟩. ⟨hal-02453427⟩
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N°spécial de revue/special issue

2011

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Thierry Cardinal, Bertrand Poumellec, Kazuyuki Hirao. Femtosecond Direct Laser Writing and Structuring of Materials (FDLW). Optical Materials Express, 1 (4-5), pp.1-226, 2011. ⟨hal-04161626⟩
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Pré-publication, Document de travail

2025

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Ruyue Que, Olivier Plantevin, Matthieu Lancry, Bertrand Poumellec. Strategy For Steganography and Information Encryption-Decryption Using Fs Laser-Created Luminescence in Organic Solids. 2025. ⟨hal-05335658⟩
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2020

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G Manolescu, L Favaro, F Knappe, G Girard, B. Poumellec, et al.. Structural transformations induced by direct UV writing in MDECR-PECVD silica layer exhibiting negative index change. 2020. ⟨hal-02668203⟩
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