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Competing four-wave mixing processes in dispersion oscillating telecom fiber

We experimentally study the dynamics of the generation of multiple sidebands by means of a quasi-phase-matched four-wave mixing (FWM) process occurring in a dispersion-oscillating, highly nonlinear optical fiber. The fiber under test is pumped by a ns microchip laser operating in the normal average...

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Published in:Optics letters 2013-12, Vol.38 (24), p.5361-5364
Main Authors: Finot, Christophe, Fatome, Julien, Sysoliatin, Alexej, Kosolapov, A, Wabnitz, Stefan
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cited_by cdi_FETCH-LOGICAL-c462t-c1e184f94bc7ea61d84defeec39e8f4d5b7e864193feacd29773ea418a99c7523
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description We experimentally study the dynamics of the generation of multiple sidebands by means of a quasi-phase-matched four-wave mixing (FWM) process occurring in a dispersion-oscillating, highly nonlinear optical fiber. The fiber under test is pumped by a ns microchip laser operating in the normal average group-velocity dispersion regime and in the telecom C band. We reveal that the growth of higher-order sidebands is strongly influenced by the competition with cascade FWM between the pump and the first-order quasi-phase matched sidebands. The properties of these competing FWM processes are substantially affected when a partially coherent pump source is used, leading to a drastic reduction of the average power needed for sideband generation.
doi_str_mv 10.1364/OL.38.005361
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source Optica Publishing Group Journals
subjects Dispersions
Dynamic tests
Fibers
Four-wave mixing
Optical fibers
Optics
Physics
Pumps
Sidebands
Telecommunications
title Competing four-wave mixing processes in dispersion oscillating telecom fiber
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