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Documents publiés en "2014"

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Nombre de documents: 28

A

Ahlawat, M., Bostani, A., Tehranchi, A., & Kashyap, R. (juillet 2014). Tunable wavelength shifters using tight focusing in a wideband engineered PPLN crystal [Communication écrite]. Nonlinear Photonics (NP 2014), Barcelona, Spain. Lien externe

Ahmadi-Tameh, T., Sawan, M., & Kashyap, R. (juillet 2014). Self-Referencing Ratio-Metric Optical Rotation Sensor for Avionic Application [Communication écrite]. OSA Optical Sensors 2014, Barcelone, Espagne. Lien externe

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Baiad, M. D., Gagné, M., & Kashyap, R. (novembre 2014). Distributed tilted fiber Bragg grating and surface plasmon polariton sensors (Invited paper) [Communication écrite]. Latin America Optics and Photonics Conference (LAOP 2014), Cancun, Mexico. Lien externe

Bostani, A., Ahlawat, M., Tehranchi, A., Morandotti, R., & Kashyap, R. (juillet 2014). SHG response reciprocity for a specially-designed step-chirped grating [Communication écrite]. Nonlinear Photonics (NP 2014), Barcelona, Spain. Lien externe

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Gagne, M., & Kashyap, R. (2014). Random fiber Bragg grating Raman fiber laser. Optics Letters, 39(9), 2755-2758. Lien externe

Gagne, M., Loranger, S., Lapointe, J., & Kashyap, R. (2014). Fabrication of high quality, ultra-long fiber Bragg gratings: Up to 2 million periods in phase. Optics Express, 22(1), 387-398. Lien externe

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Hu, Y., Tehranchi, A., Wabnitz, S., Chen, Z., Kashyap, R., & Morandotti, R. (juillet 2014). Intra-pulse Raman scattering controlled via asymmetric airy pulses [Communication écrite]. Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides (BGPP 2014), Barcelona, Spain. Lien externe

Hu, Y., Tehranchi, A., Wabnitz, S., Chen, Z., Kashyap, R., & Morandotti, R. (juin 2014). Tunable raman soliton self-frequency shift via an asymmetric airy pulse [Communication écrite]. CLEO: QELS Fundamental Science (CLEO-QELS 2014), San Jose, CA, United states. Lien externe

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Kashyap, R., Bostani, A., & Tehranchi, A. (2014). Grating structures with specifically located domain-inverted regions. (Demande de brevet no WO2014176690). Lien externe

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Lambin Iezzi, V., Loranger, S., & Kashyap, R. (avril 2014). Highly flexible short-pulse generation and high sensitivity sensing with stimulated Brillouin scattering in optical fibers [Communication écrite]. 2nd Radio and Antenna Days of the Indian Ocean (RADIO 2014), Flic-en-Flac, Mauritius. Publié dans IOP Conference Series: Materials Science and Engineering, 67. Lien externe

Lambin Iezzi, V., Loranger, S., & Kashyap, R. (octobre 2014). Six-Fold Temperature and Strain Sensitivity Improvement of Brillouin Based Distributed Sensor [Résumé]. Frontiers in Optics 2014, Tucson, Arizona. Lien externe

Lambin Iezzi, V., Loranger, S., Marois, M., & Kashyap, R. (2014). High-sensitivity temperature sensing using higher-order Stokes stimulated Brillouin scattering in optical fiber. Opt Lett, 39(4), 857-60. Lien externe

Lambin-Iezzi, V., Loranger, S., Gagné, M., & Kashyap, R. (juillet 2014). Tuneable photonic bandgap structures [Résumé]. OptoElectronics and Communication Conference and Australian Conference on Optical Fibre Technology, Melbourne, Australia. Non disponible

Lapointe, J., Gagne, M., Li, M.-J., & Kashyap, R. (2014). Making smart phones smarter with photonics. Optics Express, 22(13), 15473-15483. Lien externe

Lin, G. R., Liu, C. C., Fu, M. Y., Lee, C. L., Liu, W. F., & Kashyap, R. (juillet 2014). A dual-parameter sensor based on a no-core fiber and fiber Bragg grating [Communication écrite]. 19th OptoElectronics and Communications Conference (OECC 2014) and the 39th Australian Conference on Optical Fibre Technology (ACOFT 2014), Melbourne, VIC, Australia. Lien externe

Lin, G.-R., Baiad, M. D., Gagne, M., Liu, W.-F., & Kashyap, R. (2014). Harnessing the fiber fuse for sensing applications. Optics Express, 22(8), 8962-8969. Lien externe

Lin, G.-R., Baiad, M. D., Gagne, M., Liu, W.-F., & Kashyap, R. (juin 2014). A novel refractive index sensor based on an induced micro-structure fiber [Communication écrite]. 23rd International Conference on Optical Fibre Sensors, Santander, Espagne. Lien externe

Loranger, S., Gagné, M., & Kashyap, R. (2014). Capacitors go optical: wavelength independent broadband mode cavity. Optics Express, 22(12), 14253-62. Lien externe

Loranger, S., Gagné, M., & Kashyap, R. (2014). Capacitors go optical: wavelength independent broadband mode cavity: erratum. Optics Express, 22(24), 30127-30127. Lien externe

Loranger, S., Gagné, M., & Kashyap, R. (octobre 2014). The Optical Capacitor: A Cavity with an extended broadband mode using chirped fiber-Bragg gratings [Résumé]. Frontiers in Optics 2014, Tucson, Arizona. Lien externe

Loranger, S., Soares De Lima Filho, E., Nemova, G., & Kashyap, R. (février 2014). Thermal study of laser cooling in rhodamine dye using a Bragg grating [Affiche]. SPIE OPTO, San Francisco, Calif.. Non disponible

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Meenakshisundaram, N., Pandiyan, K., & Kashyap, R. (2014). A systematic approach for designing quasi-periodic optical superlattices using the Hadamard matrix. Journal of Optics, 16(1). Lien externe

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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

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

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). Thin-disk athermal laser system. Optics Communications, 319, 100-105. Lien externe

S

Soares De Lima Filho, E., Baiad, M. D., Gagné, M., & Kashyap, R. (2014). Fiber Bragg gratings for low-temperature measurement. Optics Express, 22(22), 27681-27694. 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

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