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Documents dont l'auteur est "Messaddeq, Younès"

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Nombre de documents: 21

A

Ahlawat, M., Vazquez, G. V., Nalin, M., Messaddeq, Y., Ribeiro, S., & Kashyap, R. (septembre 2009). Refractive index changes in photochromic SbPO4-WO3 glass by exposure to band-gap radiation [Communication écrite]. 12th International Conference on the Physics of Non-Crystalline Solids (PNCS 2009), Foz do Iguaçu, Brazil. Publié dans Journal of Non-Crystalline Solids, 356(44-49). Lien externe

B

Boisvert, J.-S., Hlil, A. R., Messaddeq, Y., & Kashyap, R. (juillet 2022). Femtosecond written waveguide in photosensitive elastomeric PDMS [Communication écrite]. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials 2022, Maastricht, Limburg, Netherlands. Publié dans Optica Advanced Photonics Congress 2022, 24. Lien externe

Boisvert, J.-S., Hlil, A., Loranger, S., Riaz, A., Ledemi, Y., Messaddeq, Y., & Kashyap, R. (2022). Photosensitization agents for fs laser writing in PDMS. Scientific Reports, 12(1), 10 pages. Lien externe

Boisvert, J.-S., Hlil, A., Hassan, I., Thomas, J., Lorre, P., Correr, W., Ledemi, Y., Messaddeq, Y., & Kashyap, R. (2020). Photosensitised PDMS for femtosecond laser writing. OSA Continuum, 3(5), 1334-1345. Lien externe

H

Hlil, A. R., Boisvert, J.-S., Titi, H. M., Garcia-Puente, Y., Correr, W., Loranger, S., Thomas, J., Riaz, A., Messaddeq, Y., & Kashyap, R. (2023). Effect of Photoinitiators Doped in PDMS for Femtosecond-Laser Writing: Characterization and Outcomes. ACS Omega, 8(36), 32340-32351. Lien externe

K

Kummara, V. K., Ledemi, Y., Soares De Lima Filho, E., Nemova, G., Messaddeq, Y., & Kashyap, R. (2016). Development of Yb3+-doped oxyfluoride glass-ceramics with low OH−content containing CaF2nanocrystals for optical refrigeration. Optical Engineering, 56(1). Lien externe

L

Ledemi, Y., Lapointe, J., Morency, S., Yu, Y.-J., Messaddeq, Y., & Kashyap, R. (novembre 2015). Chalcogenide glass fiber tape [Communication écrite]. Workshop on Specialty Optical Fibers and their Applications (WSOF 2015), Hong Kong, China. Lien externe

M

Mehaboob Cheriyathu Valappil, A., Meyneng, T., Lefebvre, J., Jalilpiran, S., Guérineau, T., Labranche, P., LaRochelle, S., & Messaddeq, Y. (2025). High-bismuth-content phospho-silicate fiber for optical amplification. Optical Materials Express, 15(10), 2510-2521. Lien externe

Meyneng, T., Aïssaoui, M., Grégoire, N., Labranche, P., Morency, S., Boisvert, J.-S., Karpov, V., Messaddeq, Y., & Kashyap, R. (2025). Anti-stokes fluorescence cooling of lanthanum aluminosilicate glasses. Optical Materials Express, 15(4), 724-736. Disponible

Meyneng, T., Thomas, J., Grégoire, N., Messaddeq, Y., & Kashyap, R. (janvier 2023). Steaming ahead with laser cooling: new perspectives in materials engineering for photonics in all-oxide silica glass [Présentation]. Dans SPIE Photonics West 2023, San Francisco, California, United States. Lien externe

Meyneng, T., Thomas, J., Grégoire, N., Leelapornpisit, W., Valdez, J., Kashyap, R., & Messaddeq, Y. (2023). Controlled phase-separation effect for enhanced optical refrigeration in yttrium-aluminosilicate glasses. Journal of Materials Chemistry C, 11(23), 7619-7628. Lien externe

Maia, L. J. Q., Thomas, J., Ledemi, Y., Kummara, V. K., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (2018). Photonic properties of novel Yb³⁺ doped germanium-lead oxyfluoride glass-ceramics for laser cooling applications. Frontiers of Optoelectronics, 11(2), 189-198. Lien externe

Maia, L. J. Q., Thomas, J., Kummara, V. K., Ledemi, Y., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (janvier 2018). Structural and optical characterizations of Yb³⁺ doped GeO₂-PbF₂-PbO glass-ceramics for optical refrigeration [Communication écrite]. Optical and Electronic Cooling of Solids III, San Francisco, CA (8 pages). Lien externe

T

Thomas, J., Meyneng, T., Tehranchi, A., Grégoire, N., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (janvier 2024). Recent progress in laser cooling of oxide only phase separated rare earth silica glasses [Présentation]. Dans SPIE OPTO, 2024, San Francisco, California, United States. Lien externe

Thomas, J., Meyneng, T., Grégoire, N., Monet, F., Tehranchi, A., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (janvier 2023). Laser-induced cooling of rare earth doped oxide-only silica glass [Présentation]. Dans SPIE Photonics West 2023, San Francisco, California, United States. Lien externe

Thomas, J., Meyneng, T., Tehranchi, A., Grégoire, N., Monet, F., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (2023). Demonstration of laser cooling in a novel all oxide GAYY silica glass. Scientific Reports, 13(1), 11 pages. Lien externe

Thomas, J., Meyneng, T., Ledemi, Y., Roberge, A., Monet, F., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (2023). Enhancing the optical performance of oxyfluoride glass ceramics by optimizing the oxide: Fluoride ratio and crystallinity for optical refrigeration. Journal of Non-Crystalline Solids: X, 17, 10 pages. Disponible

Thomas, J., Meyneng, T., Tehranchi, A., Manarazan, P., Monet, F., Boisvert, J.-S., Morency, S., Grégoire, N., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (janvier 2022). Characteristics of Yb-doped silica fibers containing Y2O3 nanoparticles for optical refrigeration [Communication écrite]. Photonic Heat Engines : Science and Applications IV, San Francisco, CA, USA (5 pages). Lien externe

Thomas, J., Meyneng, T., Ledemi, Y., Roberge, A., Biosvert, J.-S., Hlil, A., Seletskiy, D., Maia, L. J. Q., Messaddeq, Y., & Kashyap, R. (mars 2021). Enhanced anti-Stokes emission in oxyfluoride glass ceramics for optical refrigeration [Communication écrite]. Photonic Heat Engines: Science and Applications III (7 pages). Lien externe

Thomas, J., Meyneng, T., Ledemi, Y., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (octobre 2021). Impact of purification on the optical properties of oxyfluoride glass ceramics for laser cooling applications [Communication écrite]. 2021 Advanced Solid State Lasers, Washington, DC, USA. Lien externe

Thomas, J., Meyneng, T., Ledemi, Y., Rakotonandrasana, A., Seletskiy, D., Maia, L. J. Q., Messaddeq, Y., & Kashyap, R. (février 2020). Oxyfluoride glass-ceramics: A bright future for laser cooling [Communication écrite]. Photonic Heat Engines: Science and Applications II, San Francisco, CA, United states (7 pages). Lien externe

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