首页> 外文会议>International Conference on Plastic Optical Fibers >CORRELATION BETWEEN MODE COUPLING AND LIGHT SCATTERING CAUSED BY MICROSCOPIC HETEROGENEOUS STRUCTURE IN GRADED-INDEX PLASTIC OPTICAL FIBER
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CORRELATION BETWEEN MODE COUPLING AND LIGHT SCATTERING CAUSED BY MICROSCOPIC HETEROGENEOUS STRUCTURE IN GRADED-INDEX PLASTIC OPTICAL FIBER

机译:分级折射率光纤中微观异构结构引起的模式耦合与光散射的相关性

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We investigated the effect of mode coupling due to microscopic heterogeneities in poly(methyl methacrylate) (PMMA)-based graded-index plastic optical fiber (GI POF). To evaluate the correlation characteristics of microscopic heterogeneities inside an actual GI POF, we analyzed scattering loss of the GI POF with light scattering theory for an amorphous solid. This allows for approximate estimation of various pairs of correlation length and mean square of dielectric constant fluctuation for measured scattering loss. Taking into account the evaluated correlation characteristics, we estimated the correlation length of POF core polymer by analyzing the effect of mode coupling on optical pulse response with developed coupled power equation. The results showed that the correlation length of POF core polymer was longer than that of bulk polymer. This indicates that the microscopic heterogeneous structure could be changed in fabrication process of GI POF and become to induce strong mode coupling and large scattering loss.
机译:我们研究了由于聚(甲基丙烯酸甲酯)(PMMA)的分级指数塑料光纤(GI POF)中的微观异质性引起的模式偶联的影响。为了评价实际GI POF内微观异质性的相关特性,我们分析了与无定形固体的光散射理论的GI POF的散射损失。这允许近似估计各种相关长度和介电常数波动的均线,以测量散射损失。考虑到评估的相关特性,我们通过分析模耦合对光脉冲响应的效果来估计POF核心聚合物的相关长度。结果表明,POF核心聚合物的相关长度比散装聚合物的相关长度长。这表明可以在GI POF的制造过程中改变微观异质结构,并成为诱导强模式耦合和大的散射损失。

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