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Influence of the fiber design and launch beam on transmission characteristics of multimode glass W-type optical fibers

机译:光纤设计和发射光束对多模玻璃W型光纤传输特性的影响

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摘要

Bandwidth and steady-state loss of multimode glass W-type optical fibers (doubly clad fibers with three functional layers) are evaluated for the varied fiber design and launch beam parameters. These transmission characteristics are determined from the solution of the time-dependent power flow equation by the explicit finite difference method. Results are presented in a graph form as functions either of the fiber length or loss for the varied thickness and depth of the fiber's intermediate layer (inner cladding), fiber's coupling strength, and input beam (mean angle and width). The trade-off relation between the bandwidth and steady-state loss for designing multimode glass W-type optical fibers is shown in graphs and highlighted the text. We found that bandwidth improves with thinner and shallower intermediate layers, narrower and more central launch-beam, and stronger mode coupling. (C) 2014 Elsevier Ltd. All rights reserved.
机译:针对变化的光纤设计和发射光束参数,评估了多模玻璃W型光纤(具有三个功能层的双包层光纤)的带宽和稳态损耗。这些传输特性是由时变潮流方程的求解通过显式有限差分法确定的。结果以图表形式显示,随光纤长度或损耗变化,随光纤中间层(内包层)厚度和深度的变化,光纤的耦合强度和输入光束(平均角度和宽度)而变化。图中显示了设计多模玻璃W型光纤的带宽与稳态损耗之间的折衷关系,并突出显示了文本。我们发现带宽随着中间层的变薄和变浅,中央发射束变窄和集中以及模耦合增强而提高。 (C)2014 Elsevier Ltd.保留所有权利。

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