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Influence of the angle-dependence of mode coupling on optical power distribution in step-index plastic optical fibers

机译:阶跃型塑料光纤中模耦合角度依赖性对光功率分布的影响

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摘要

Determination of the power distribution in step index plastic optical fibers by the power flow equation has been reported in the literature both with and without the simplifying assumption of constant coupling that is independent of the angle of light propagation. The need for this assumption is evaluated in this paper. Results with the angle-dependent coupling coefficient are compared to those derived under the simplifying assumption of constant coupling. Benchmarked to values measured experimentally, this comparison covered the coupling lengths L_c (denoting where the equilibrium mode distribution is achieved in the fiber) and lengths z_s (for achieving the steady-state distribution). Results differ slightly but only for longer fiber lengths, thus largely vindicating the simplifying assumption of constant coupling.
机译:在文献中已经报道了在具有和不具有与光传播的角度无关的恒定耦合的简化假设的情况下通过功率流方程确定阶跃折射率塑料光纤中的功率分布的情况。本文评估了这种假设的必要性。将具有取决于角度的耦合系数的结果与在恒定耦合的简化假设下得出的结果进行比较。以实验测得的值为基准,该比较涵盖了耦合长度L_c(表示在光纤中达到平衡模式分布的位置)和长度z_s(用于实现稳态分布)。结果略有不同,但仅适用于更长的光纤长度,从而在很大程度上证明了恒定耦合的简化假设。

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