The process of high-energy soliton fission is experimentally and numerically investigated in a graded-index multimode fiber. Fission dynamics is analyzed by comparing experimental observations and simulations. A novel nonlinear propagation regime is observed, where solitons produced by the fission have a nearly constant Raman wavelength shift and same pulse width over a wide range of soliton energies.

High-energy soliton fission dynamics in multimode GRIN fiber / Zitelli, Mario; Mangini, Fabio; Ferraro, Mario; Niang, Alioune; Kharenko, Denis; Wabnitz, Stefan. - In: OPTICS EXPRESS. - ISSN 1094-4087. - 28:14(2020), pp. 20473-20488. [10.1364/OE.394896]

High-energy soliton fission dynamics in multimode GRIN fiber

Zitelli, Mario;Mangini, Fabio;Ferraro, Mario;Wabnitz, Stefan
2020

Abstract

The process of high-energy soliton fission is experimentally and numerically investigated in a graded-index multimode fiber. Fission dynamics is analyzed by comparing experimental observations and simulations. A novel nonlinear propagation regime is observed, where solitons produced by the fission have a nearly constant Raman wavelength shift and same pulse width over a wide range of soliton energies.
2020
optical solitons; nonlinear optics; optical fibers
01 Pubblicazione su rivista::01a Articolo in rivista
High-energy soliton fission dynamics in multimode GRIN fiber / Zitelli, Mario; Mangini, Fabio; Ferraro, Mario; Niang, Alioune; Kharenko, Denis; Wabnitz, Stefan. - In: OPTICS EXPRESS. - ISSN 1094-4087. - 28:14(2020), pp. 20473-20488. [10.1364/OE.394896]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1434481
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