Stéphane Pitois
University of Burgundy
134 Papers
644 Citations
Stéphane Pitois is an academic researcher from University of Burgundy. The author has contributed to research in topics: Optical fiber & Polarization (waves). The author has an hindex of 30, co-authored 134 publications. Previous affiliations of Stéphane Pitois include Centre national de la recherche scientifique.
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Papers
Frequency-agile dual-comb spectroscopy
Guy Millot,Stéphane Pitois,Ming Yan,Tatevik Hovhannisyan,Abdelkrim Bendahmane,Theodor W. Hänsch,Nathalie Picqué +6 more
TL;DR: In this article, a new architecture for dual-comb spectroscopy based on all-fibre tunable frequency comb sources using standard telecommunication fibre optics components is proposed.
426
Experimental observation of a new modulational instability spectral window induced by fourth-order dispersion in a normally dispersive single-mode optical fiber
Stéphane Pitois,Guy Millot +1 more
TL;DR: In this article, the influence of the fourth-order dispersion on the onset of scalar spontaneous modulational instability (MI) in a single-mode optical fiber was investigated, and the measured modulation frequencies were in very good agreement with those obtained from the linear stability analysis.
178
Linear and Nonlinear Characterizations of Chalcogenide Photonic Crystal Fibers
Julien Fatome,Coraline Fortier,Thanh Nam Nguyen,Thierry Chartier,Frédéric Smektala,K. Messaad,Bertrand Kibler,Stéphane Pitois,Grégory Gadret,Christophe Finot,Johann Troles,Frédéric Désévédavy,Patrick Houizot,Gilles Renversez,Laurent Brilland,Nicholas Traynor +15 more
TL;DR: In this paper, the linear and nonlinear properties of GeSbS and AsSe chalcogenide photonic crystal fibers were investigated through several experimental setups, and the second and third-order chromatic dispersion, effective area, losses, birefringence, the nonlinear Kerr coefficient as well as Brillouin and Raman scattering properties were measured.
Polarization Domain Wall Solitons with Counterpropagating Laser Beams
TL;DR: In this paper, the experimental observation of a polarization kink or domain wall soliton by mixing two intense counter-propagating laser beams in a nonlinear isotropic dielectric was reported.
87
Generation of localized pulses from incoherent wave in optical fiber lines made of concatenated Mamyshev regenerators
TL;DR: In this paper, the authors investigate the properties of optical fiber lines made of Mamyshev regenerators (MRs) based on self-phase modulation and subsequent spectral filtering and show that such a regenerator line can be used to generate random sequences of optical pulses from an incoherent wave.