We introduce and experimentally demonstrate the concept of all-optical beam switching in graded-index multimode optical fibers. Nonlinear coupling between orthogonally polarized seed and signal beams permits to control the spatial beam quality at the fiber output. Remarkably, we show that even a few-mode control beam whose power is about ten times lower than that of the total beam may substantially enhance the quality of an intense, highly multimode signal beam. We propose a simple geometrical representation of the beam switching operation, whose validity is quantitatively confirmed by the experimental mode decomposition of the output beam. All-optical switching of multimode beams may find important applications in high-power beam delivery and fiber lasers.

Multimode Optical Fiber Beam-By-Beam Cleanup

Mangini F.;
2023-01-01

Abstract

We introduce and experimentally demonstrate the concept of all-optical beam switching in graded-index multimode optical fibers. Nonlinear coupling between orthogonally polarized seed and signal beams permits to control the spatial beam quality at the fiber output. Remarkably, we show that even a few-mode control beam whose power is about ten times lower than that of the total beam may substantially enhance the quality of an intense, highly multimode signal beam. We propose a simple geometrical representation of the beam switching operation, whose validity is quantitatively confirmed by the experimental mode decomposition of the output beam. All-optical switching of multimode beams may find important applications in high-power beam delivery and fiber lasers.
2023
UE
Inglese
41
10
1
11
11
Fiber nonlinear optics; Laser beams; Multimode fibers; Optical beams; Optical fiber communication; Optical fiber polarization; Optical switch; Optical switches; Optical transistor; Spatial beam self-cleaning; Ultrafast optics
   H2020
Not applicable
12
info:eu-repo/semantics/article
262
Ferraro, M.; Mangini, F.; Leventoux, Y.; Tonello, A.; Zitelli, M.; Mansuryan, T.; Sun, Y.; Fevrier, S.; Krupa, K.; Kharenko, D.; Wabnitz, S.; Couderc,...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/576834
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