In this paper we investigate the effect of microstructure irregularities and applied strain on backward Brillouin scattering by comparing two photonic crystal fibers drawn with different parameters in order to minimize diameter and microstructure fluctuations. We fully characterize their Brillouin properties including the gain spectrum and the critical power. Using Brillouin echoes distributed sensing with a high spatial resolution of 30 cm we are able to map the Brillouin frequency shift along the fiber and get an accurate estimation of the microstructure longitudinal fluctuations. Our results reveal a clear-cut difference of longitudinal homogeneity between the two fibers
Sophisticated techniques have been recently developed to achieve centimetric spatial resolution in d...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
This PhD thesis focuses on the fundamental aspects of Brillouin scattering in chalcogenidemicrofiber...
International audienceIn this paper we investigate the effect of microstructure irregularities and a...
International audiencePhotonic Crystal Fibers (PCF) play a crucial role for fundamental investigatio...
Brillouin distributed measurement techniques have been extensively developed for structural health m...
International audienceWe present a novel distributed sensing technique that allows for the observati...
International audienceWe present a novel distributed sensing technique that allows for the observati...
A simple physical description of the nonlinear optical interaction based on Brillouin echoes is pres...
Brillouin scattering is a fundamental nonlinear opto-acoustic interaction present in optical fibers ...
We present a novel distributed sensing technique that makes possible the observation of Brillouin ga...
International audienceWe report the first experimental observation of surface Brillouin scattering i...
Brillouin scattering is a fundamental nonlinear opto-acoustic interaction present in optical fibers ...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
We provide a complete experimental characterization of stimulated Brillouin scattering in a 160 m lo...
Sophisticated techniques have been recently developed to achieve centimetric spatial resolution in d...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
This PhD thesis focuses on the fundamental aspects of Brillouin scattering in chalcogenidemicrofiber...
International audienceIn this paper we investigate the effect of microstructure irregularities and a...
International audiencePhotonic Crystal Fibers (PCF) play a crucial role for fundamental investigatio...
Brillouin distributed measurement techniques have been extensively developed for structural health m...
International audienceWe present a novel distributed sensing technique that allows for the observati...
International audienceWe present a novel distributed sensing technique that allows for the observati...
A simple physical description of the nonlinear optical interaction based on Brillouin echoes is pres...
Brillouin scattering is a fundamental nonlinear opto-acoustic interaction present in optical fibers ...
We present a novel distributed sensing technique that makes possible the observation of Brillouin ga...
International audienceWe report the first experimental observation of surface Brillouin scattering i...
Brillouin scattering is a fundamental nonlinear opto-acoustic interaction present in optical fibers ...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
We provide a complete experimental characterization of stimulated Brillouin scattering in a 160 m lo...
Sophisticated techniques have been recently developed to achieve centimetric spatial resolution in d...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
This PhD thesis focuses on the fundamental aspects of Brillouin scattering in chalcogenidemicrofiber...