Distributed loss and mode coupling and their effect on time-dependent propagation in multimode fibers

A first-order solution to the transport equation for the total power propagating in each degenerate mode group of a multimode fiber is used to describe pulse propagation in multimode fibers. The basic transport equation is supplemented by models for Rayleigh-scattering-induced losses, mode coupling,...

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Veröffentlicht in:Applied Optics 1993-11, Vol.32 (33), p.6664-6677
Hauptverfasser: Yadlowsky, M J, Mickelson, A R
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creator Yadlowsky, M J
Mickelson, A R
description A first-order solution to the transport equation for the total power propagating in each degenerate mode group of a multimode fiber is used to describe pulse propagation in multimode fibers. The basic transport equation is supplemented by models for Rayleigh-scattering-induced losses, mode coupling, and the modal group velocity function. Each of these models can be specified for a particular fiber from a standard set of near-field measurements and then incorporated into pulse propagation simulations, which closely matched the measured pulse response of test fibers.
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source Alma/SFX Local Collection; Optica Publishing Group Journals
title Distributed loss and mode coupling and their effect on time-dependent propagation in multimode fibers
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