Frequency response and bandwidth in low-numerical-aperture step-index plastic optical fibers

By experimental measurement and from a numerical solution to the time-dependent power flow equation, the frequency response, bandwidth, mode coupling, and mode-dependent attenuation are determined for a low-numerical-aperture (NA) plastic optical fiber. Frequency response and bandwidth are specified...

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Veröffentlicht in:Applied optics (2004) 2014-10, Vol.53 (30), p.6999-7003
Hauptverfasser: Savović, Svetislav, Drljača, Branko, Kovačević, Milan S, Djordjevich, Alexandar, Bajić, Jovan S, Stupar, Dragan Z, Stepniak, Grzegorz
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container_end_page 7003
container_issue 30
container_start_page 6999
container_title Applied optics (2004)
container_volume 53
creator Savović, Svetislav
Drljača, Branko
Kovačević, Milan S
Djordjevich, Alexandar
Bajić, Jovan S
Stupar, Dragan Z
Stepniak, Grzegorz
description By experimental measurement and from a numerical solution to the time-dependent power flow equation, the frequency response, bandwidth, mode coupling, and mode-dependent attenuation are determined for a low-numerical-aperture (NA) plastic optical fiber. Frequency response and bandwidth are specified as a function of fiber length. Numerical results are verified against experimental measurements. Mode coupling and modal attenuation are found to differ substantially between two fiber varieties of the same type (both low-NA, step-index, and plastic), implying their preferential suitability that is application-specific.
doi_str_mv 10.1364/AO.53.006999
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source Alma/SFX Local Collection; Optica Publishing Group Journals
subjects Attenuation
Bandwidth
Fibers
Frequency response
Joining
Mathematical analysis
Mathematical models
Optical fibers
Power flow
title Frequency response and bandwidth in low-numerical-aperture step-index plastic optical fibers
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