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François Sanchez

Researcher at University of Angers

Publications -  235
Citations -  5149

François Sanchez is an academic researcher from University of Angers. The author has contributed to research in topics: Fiber laser & Laser. The author has an hindex of 40, co-authored 232 publications receiving 4625 citations. Previous affiliations of François Sanchez include University of Rouen & Centre national de la recherche scientifique.

Papers
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Multistability and hysteresis phenomena in passively mode-locked fiber lasers

TL;DR: In this article, the authors considered the practical case of the ytterbium-doped fiber laser operating in the normal dispersion regime and derived an iterative equation for the optical Kerr nonlinearity, the phase plates and the polarizer.
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Effects of ion pairs on the dynamics of erbium-doped fiber lasers.

TL;DR: A linear stability analysis demonstrates the existence of self-pulsing for a finite range of pumping rates and a theoretical model which describes the active medium as a mixture of isolated ions and ion pairs is presented.
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Experimental and theoretical study of higher-order nonlinearities in chalcogenide glasses

TL;DR: In this article, the nonlinear properties of two distinct chalcogenide glasses were investigated experimentally and theoretically through a spatially resolved Mach-Zehnder interferometer, and it was shown that the resulting nonlinear index coefficient cannot be correctly described with the usual cubic model.
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Quintic complex Ginzburg-Landau model for ring fiber lasers.

TL;DR: The dynamics of a fiber ring laser mode locked by nonlinear polarization rotation is reduced to a quintic complex Ginzburg-Landau (CGLQ) equation and the coefficients of the equation are explicitly given as functions of the physical parameters of the laser, especially the orientation of the phase plates.
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Dynamics and stabilization of a high power side-pumped Yb- doped double-clad fiber laser

TL;DR: In this paper, the dynamics of a high power Yb3+-doped double-clad fiber laser in various optical configurations operating in the 1.08 μm wavelength were investigated.