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Documents dont l'auteur est "Karpov, Vladimir"

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Nombre de documents: 8

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Garcia Puente, Y., Kashyap, R., & Karpov, V. (mai 2025). 813-nm Single-Frequency Fiber Laser for Sr Optical Lattice Clocks [Communication écrite]. Photonics North (PN 2025), Ottawa, ON, Canada (2 pages). Lien externe

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Kashyap, R., Meyneng, T., Aïssaoui, M., Karpov, V., Grégoire, N., Boisvert, J.-S., & Messaddeq, Y. (janvier 2025). Recent developments in heat management of oxide nanocomposite silica optical fibers and glass rods through laser cooling [Communication écrite]. Photonics West 2025, San Francisco, CA, USA (4 pages). Lien externe

Karpov, V., Loranger, S., & Kashyap, R. (février 2019). High power single frequency, linearly polarized DFB Raman fiber laser operating at 1178-nm [Communication écrite]. SPIE LASE 2019, San Francisco, California, United States (5 pages). Lien externe

Karpov, V., Loranger, S., & Kashyap, R. (juillet 2018). A tunable, single frequency, linearly polarized DFB Raman fiber laser operating at 1178-nm [Communication écrite]. Bragg Gratings, Photosensitivity and Poling in Glass Waveguides and Materials (BGPPM 2018), Zurich, Switzerland. Lien externe

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Loranger, S., Karpov, V., Kashyap, R., & Schinn, G. (juin 2017). Low threshold single-frequency linearly polarized DFB Raman fibre laser [Communication écrite]. Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC 2017), Munich, Germany (1 page). Lien externe

Loranger, S., Karpov, V., Schinn, G. W., & Kashyap, R. (2017). Single-frequency low-threshold linearly polarized DFB Raman fiber lasers. Optics Letters, 42(19), 3864-3867. Lien externe

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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

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Thomas, J., Meyneng, T., Tehranchi, A., Grégoire, N., Karpov, V., Seletskiy, D., Messaddeq, Y., & Kashyap, R. (2023). Anti-Stokes cooling in highly ytterbium doped phase separated aluminium-yttrium oxide glass by 4 K. Optical Materials, 144, 8 pages. Lien externe

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