Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applications, such as implementing a fast saturable absorber mechanism in fiber lasers via multimode interference. We obtain a new exact solution for the nonlinear evolution of first and second order moments of a laser beam of arbitrary transverse shape carried by a graded-index multimode fiber. We have experimentally directly visualized the longitudinal evolution of beam self-imaging by means of femtosecond laser pulse propagation in both the anomalous and the normal dispersion regime of a standard telecom graded-index multimode optical fiber. Light scattering out of the fiber core via visible photo-luminescence emission permits us to directly measure the self-imaging period and the beam dynamics. Spatial shift and splitting of the self-imaging process under the action of self-focusing are also revealed.

Nonlinear beam self-imaging and self-focusing dynamics in a GRIN multimode optical fiber: Theory and experiments

Mangini F.;Niang A.;
2020-01-01

Abstract

Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applications, such as implementing a fast saturable absorber mechanism in fiber lasers via multimode interference. We obtain a new exact solution for the nonlinear evolution of first and second order moments of a laser beam of arbitrary transverse shape carried by a graded-index multimode fiber. We have experimentally directly visualized the longitudinal evolution of beam self-imaging by means of femtosecond laser pulse propagation in both the anomalous and the normal dispersion regime of a standard telecom graded-index multimode optical fiber. Light scattering out of the fiber core via visible photo-luminescence emission permits us to directly measure the self-imaging period and the beam dynamics. Spatial shift and splitting of the self-imaging process under the action of self-focusing are also revealed.
2020
Inglese
28
16
24005
24021
17
Founding: European Research Council (ERC) (740355); Agence Nationale de la Recherche (ANR) (ANR-18-CE080016-01); CILAS Company (ArianeGroup) by means of the shared X-LAS laboratory; Swedish Research Council (Grant No. 2017-05309); Russian Ministry of Science and Education (14.Y26.31.0017);
UE
10
info:eu-repo/semantics/article
262
Hansson, T.; Tonello, A.; Mansuryan, T.; Mangini, F.; Zitelli, M.; Ferraro, M.; Niang, A.; Crescenzi, R.; Wabnitz, S.; Couderc, V.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/535517
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