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Scattering Into Guided Modes Due to Imperfect Graded-Index Structure in Polymer Optical Fibers

机译:由于聚合物光纤中不完美分度结构的引导模式散射

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摘要

Rayleigh scattering in graded-index polymer optical fibers (GI-POF) is studied under the assumption that spherical scatterers are uniformly distributed within the layers of concentric ring structure. This approximation allows to describe typical imperfections occurring during the fabrication of GI-POFs. For the purpose of experimental characterization by side illumination, an analytical model of the light conversion into waveguide modes has been developed. This model describes the mode excitation by a multiplicative contribution of three different physical mechanisms. The corresponding experimental analysis of the light scattering has been performed and compared with numerical simulation results for the fibers with single-ring and multi-ring structures. Besides the application to GI-POFs, this article can be also applied to multi-step index fibers.
机译:在梯度指数聚合物光纤(GI-POF)中的Rayleigh散射在假设球形散射体均匀地分布在同心环结构层内。该近似允许描述在GI-POF的制造期间发生的典型缺陷。出于侧面照明的实验表征的目的,已经开发了光转换成波导模式的分析模型。该模型通过三种不同物理机制的乘法贡献描述了模式激励。已经进行了光散射的相应实验分析,并与具有单环和多环结构的纤维的数值模拟结果进行了比较。除了应用于GI-POFS之外,本文还可以应用于多步指数纤维。

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