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Documents dont l'auteur est "Nemova, Galina"

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Nombre de documents: 49

2022

Nemova, G. (2022). Laser Cooling and Trapping of Rare-Earth-Doped Particles. Applied Sciences, 12(8), 15 pages. Lien externe

2021

Nemova, G., & Caloz, C. (2021). Heat evacuation from active Raman media using frequency-selective dissipative coupling. Physical Review Research, 3(1), 013050 (6 pages). Disponible

Nemova, G., & Caloz, C. (mars 2021). Heat mitigation with frequency selective passive PT symmetry in active Raman media [Communication écrite]. Photonic Heat Engines: Science and Applications III (7 pages). Lien externe

Nemova, G. (2021). Radiation-Balanced Lasers: History, Status, Potential. Applied Sciences, 11(16), 23 pages. Lien externe

2018

Nemova, G., & Kashyap, R. (janvier 2018). Laser cooling of solids: latest achievements and prospects [Communication écrite]. Optical and Electronic Cooling of Solids III, San Francisco, CA (9 pages). Lien externe

2017

Nemova, G., & Kashyap, R. (2017). Laser cooling of solids under the influence of surface phonon polaritons. Journal of the Optical Society of America B-Optical Physics, 34(2), 483-488. Lien externe

Nemova, G., & Kashyap, R. (février 2017). Surface phonon polaritons as a source of laser cooling perturbation [Communication écrite]. Optical and Electronic Cooling of Solids II, San Francisco, CA, United states. Lien externe

Kummara, V. K., Ledemi, Y., Genevois, C., Veron, E., Sauvage, X., Morency, S., Soares De Lima Filho, E., Nemova, G., Allix, M., Messaddeq, Y., & Kashyap, R. (2017). Ytterbium-doped oxyfluoride nano-glass-ceramic fibers for laser cooling. Optical Materials Express, 7(6), 1980-1994. Lien externe

2016

Kummara, V. K., Soares De Lima Filho, E., Ledemi, Y., Nemova, G., Messaddeq, Y., & Kashyap, R. (2016). Development of ytterbium-doped oxyfluoride glasses for laser cooling applications. Scientific Reports, 6(1), 1-12. Disponible

Nemova, G., & Kashyap, R. (2016). Silica bottle resonator sensor for refractive index and temperature measurements. Sensors, 16(1), 1-9. Disponible

Epstein, R. I., Seletskiy, D. V., Sheik-Bahae, M., Nemova, G., & Kashyap, R. (février 2016). Bottle micro-resonator temperature sensors for laser coolers [Communication écrite]. Optical and Electronic Cooling of Solids, San Francisco, California. Lien externe

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

Nemova, G. (2016). Laser Cooling: Fundamental Properties and Applications. Lien externe

Kummara, V. K., Ledemi, Y., Soares De Lima Filho, E., Loranger, S., Nemova, G., Messaddeq, Y., & Kashyap, R. (février 2016). Progress in rare-earth-doped nanocrystalline glass-ceramics for laser cooling [Communication écrite]. Optical and Electronic Cooling of Solids, San Francisco, CA, United states. Lien externe

2015

Soares De Lima Filho, E., Quintanilla, M., Vetrone, F., Nemova, G., Kummara, V. K., & Kashyap, R. (février 2015). Characterization of fluoride nanocrystals for optical refrigeration [Communication écrite]. Laser Refrigeration of Solids VIII, San Francisco, California. Lien externe

Nemova, G., & Kashyap, R. (2015). Optimization of optical refrig[e]ration in Yb³⁺:YAG samples. Journal of Luminescence, 164, 99-104. Lien externe

Soares De Lima Filho, E., Kummara, V. K., Ledemi, Y., Yu, Y.-J., Messaddeq, Y., Nemova, G., & Kashyap, R. (2015). Ytterbium-doped glass-ceramics for optical refrigeration. Optics Express, 23(4), 4630-4640. Lien externe

Kummara, V. K., Ledemi, Y., Soares De Lima Filho, E., Nemova, G., Messaddeq, Y., & Kashyap, R. (novembre 2015). Ytterbium-doped oxyfluoride nano-glass-ceramic fibers for laser cooling [Communication écrite]. Workshop on Specialty Optical Fibers and their Applications (WSOF 2015), Hong Kong China. Lien externe

2014

Nemova, G., & Kashyap, R. (février 2014). Temperature dynamics of laser cooling of solids with Yb3+ ions [Communication écrite]. SPIE OPTO, 2014, San Francisco, California, United States. Publié dans Proceedings of SPIE. Lien externe

Nemova, G., & Kashyap, R. (2014). Laser cooling in Yb^3+:YAG. Journal of The Optical Society of America B-optical Physics, 31(2), 340-348. Lien externe

Soares De Lima Filho, E., Nemova, G., Loranger, S., & Kashyap, R. (février 2014). Direct measurement of laser cooling of Yb:YAG crystal at atmospheric pressure using a fiber Bragg grating [Communication écrite]. Laser Refrigeration of Solids VII, San Francisco, Calif., USA. Lien externe

Nemova, G., & Kashyap, R. (avril 2014). Laser cooling of CdSe quantum dots [Communication écrite]. Nanophotonics V, Bruxelles, Belgique. Lien externe

Nemova, G., & Kashyap, R. (2014). Thin-disk athermal laser system. Optics Communications, 319, 100-105. Lien externe

2013

Nemova, G., & Kashyap, R. (juin 2013). Recent advances in laser cooling of solids [Communication écrite]. Photonics North 2013, Ottawa, Canada. Publié dans Proceedings of SPIE. Lien externe

Nemova, G., & Kashyap, R. (février 2013). Laser cooling with rare-earth doped direct band gap semiconductors [Communication écrite]. SPIE OPTO 2013, San Francisco, California, United States. Lien externe

Nemova, G., & Kashyap, R. (2013). Laser cooling with rare-earth-doped direct band-gap semiconductors. Journal of the Optical Society of America B: Optical Physics, 30(5), 1141-1147. Lien externe

Loranger, S., Lesage-Landry, A., Soares De Lima Filho, E., Nemova, G., Dantas, N., Morais, P., & Kashyap, R. (février 2013). Spectroscopic and life-time measurements of quantum dot doped glass for optical refrigeration: a feasibility study [Communication écrite]. SPIE OPTO 2013, San Francisco, California (8 pages). Lien externe

2012

Nemova, G., & Kashyap, R. (janvier 2012). Laser cooling with lead-salt colloidal quantum dots doped in a glass host [Communication écrite]. Laser Refrigeration of Solids V, San Francisco, California United States (8 pages). Lien externe

Kieffer, J.-C., Nemova, G., Soares De Lima Filho, E., Loranger, S., & Kashyap, R. (juin 2012). Laser cooling with nanoparticles [Communication écrite]. Photonics North 2012, Montréal, Québec. Lien externe

Nemova, G., & Kashyap, R. (2012). Laser Cooling With PbSe Colloidal Quantum Dots. Journal of the Optical Society of America B: Optical Physics, 29(4), 676-682. Lien externe

Nemova, G., & Kashyap, R. (avril 2012). Laser cooling with Tm3+-doped nano-crystals of oxy-fluoride glass ceramic [Communication écrite]. Nanophotonics IV (7 pages). Lien externe

Nemova, G., & Kashyap, R. (2012). Laser cooling with Tm3+-doped oxy-fluoride glass ceramic. Journal of the Optical Society of America B: Optical Physics, 29(11), 3034-3038. Lien externe

Kashyap, R., & Nemova, G. (2012). Methods for laser cooling of fluorescent materials. (Demande de brevet no US20120312028). Lien externe

Nemova, G. (2012). Optical amplifiers. Non disponible

2011

Nemova, G., & Kashyap, R. (mai 2011). Athermal Ho³⁺-doped amplifier with two pumps [Communication écrite]. Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE-EQEC 2011), Munich, Germany. Lien externe

Nemova, G., & Kashyap, R. (janvier 2011). Breaking the low phonon energy barrier for laser cooling in rare-earth doped hosts [Communication écrite]. Laser Refrigeration of Solids IV, San Francisco, CA, United states. Lien externe

Kashyap, R., & Nemova, G. (juillet 2010). Laser induced cooling of solids [Communication écrite]. 9th International Conference on Excitonic and Photonic Processes in Condensed and Nano Materials (EXCON 2010), Brisbane, Australia. Publié dans Physica Status Solidi C: Current Topics in Solid State Physics, 8(1). Lien externe

Nemova, G., & Kashyap, R. (2011). Radiation-balanced amplifier with two pumps and a single system of ions. Journal of the Optical Society of America B: Optical Physics, 28(9), 2191-2194. Lien externe

Soares De Lima Filho, E., Gagné, M., Nemova, G., Kashyap, R., Saad, M., & Bowman, S. (juillet 2011). Sensing of laser cooling with optical fibres [Communication écrite]. 7th International Workshop on Fibre and Optical Passive Components (WFOPC 2011), Montréal, Québec. Lien externe

Nemova, G., & Kashyap, R. (mai 2011). Super-radiance and fluorescence are two approaches to laser cooling of solids [Communication écrite]. Photonics North 2011, Ottawa, ON, Canada. Lien externe

2010

Nemova, G., & Kashyap, R. (2010). Laser cooling of Er3+-doped solids. Optics Communications, 283(19), 3736-3739. Lien externe

2009

Kashyap, R., & Nemova, G. (2009). Surface plasmon resonance-based fiber and planar waveguide sensors. Journal of Sensors, 2009, 645162. Disponible

Nemova, G., & Kashyap, R. (juillet 2009). Athermal Raman Fiber Amplifier [Communication écrite]. Nonlinear Optics : Materials, Fundamentals and Applications (NLO 2009), Honolulu, Hawaii, UAS. Lien externe

Kashyap, R., & Nemova, G. (2009). High-power fiber amplifier. (Demande de brevet no US20090231682). Lien externe

Nemova, G. (2009). Laser cooled high-power fiber amplifier. arXiv.org, 1-10. Lien externe

Nemova, G., & Kashyap, R. (avril 2009). New designs for Ultra High High-Power Single Transverse Mode Cw fibre lasers [Communication écrite]. 6th International TECNOLASER Event. Meeting of Optic, Life and Heritage (OPTELACIC 2009), La Habana (Cuba). Non disponible

2008

Kashyap, R., & Nemova, G. (août 2008). New Perspectives in High‐Power Optical Fiber‐Amplifiers and Solid‐State Laser Cooling [Communication écrite]. 1st Workshop on Specialty Optical Fibers and Their Applications,, São Pedro, SP, Brazil. Lien externe

2007

Nemova, G., & Kashyap, R. (juillet 2006). Novel fiber Bragg grating assisted plasmon-polariton for bio-medical refractive-index sensors [Communication écrite]. International Conference on Optical and Optoelectronic Properties of Materials and Applications (ICOOPMA 2006), Darwin, Australia. Publié dans Journal of Materials Science: Materials in Electronics, 18(S1). Lien externe

Nemova, G., & Kashyap, R. (octobre 2006). Novel single mode fiber lens coupler for laser-diodes based on long period gratings in a hybrid graded-index multimode fiber [Communication écrite]. 19th Annual Meeting of the IEEE Lasers and Electro-Optics Society, Montréal, Québec. Lien externe

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