<  Retour au portail Polytechnique Montréal

Documents publiés en "2015"

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Grouper par: Auteurs ou autrices | Département | Sous-type de document | Aucun groupement
Aller à : B | I | K | L | W
Nombre de documents: 7

B

Bian, S., Loranger, S., Kashyap, R., & Strickland, D. (avril 2015). Long wavelength mid-infrared from mixing two colors from a fiber amplifier [Communication écrite]. SPIE Micro- and Nanotechnology Sensors, Systems, and Applications VII (MNT 2015), Baltimore, MD, United states. Lien externe

I

Iezzi, V. L., Loranger, S., Gagne, M., & Kashyap, R. (juin 2015). Ultrahigh resolution distributed temperature and strain sensing in optical fibre with Rayleigh and Brillouin scattering [Communication écrite]. Opto-Electronics and Communications Conference (OECC 2015), Shanghai, China (3 pages). Lien externe

K

Kashyap, R., Loranger, S., & Lambin Iezzi, V. (2015). Method for generating optical pulses and optical pulse generator. (Demande de brevet no US20150043598). Lien externe

L

Lapointe, J., Parent, F., Loranger, S., Gagne, M., & Kashyap, R. (octobre 2015). PLENARY empowering cell phones with photonics [Communication écrite]. 2nd International Conference on Opto-Electronics and Applied Optics (IEM OPTRONIX 2015), Vancouver, BC, Canada (4 pages). Lien externe

Lapointe, J., Parent, F., Soares De Lima Filho, E., Loranger, S., & Kashyap, R. (2015). Toward the integration of optical sensors in smartphone screens using femtosecond laser writing. Optics Letters, 40(23), 5654-5657. Lien externe

Loranger, S., Gagné, M., Lambin-Iezzi, V., & Kashyap, R. (2015). Rayleigh scatter based order of magnitude increase in distributed temperature and strain sensing by simple UV exposure of optical fibre. Scientific Reports, 5(1). Disponible

W

Woodward, R. I., Kelleher, E. J. R., Runcorn, T. H., Loranger, S., Popa, D., Wittwer, V. J., Ferrari, A. C., Popov, S. V., Kashyap, R., & Taylor, J. R. (2015). Fiber grating compression of giant-chirped nanosecond pulses from an ultra-long nanotube mode-locked fiber laser. Optics Letters, 40(3), 387-390. Lien externe

Liste produite: Fri May 3 03:23:14 2024 EDT.