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Performance analysis of waveguide-mode resonant optical filters with stochastic design parameters

机译:具有随机设计参数的波导模式谐振光学滤波器的性能分析

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摘要

The performance of optical filters with resonant waveguide gratings is investigated numerically in a stochastic context, assuming random fluctuations of various design variables. Specifically, we derive stochastic models based on polynomial chaos expansions, whose involved coefficients are obtained by computing spectral projections via sparse-grid quadrature. The latter exploits purely deterministic results from a rigorous coupled-wave analysis solver and requires less simulation data than standard Monte Carlo (MC) techniques. The statistical moments of the filter's spectral response are calculated reliably, as the comparison against reference results from MC analysis verifies, and the extraction of the Sobol indices reveals the structure's sensitivity with respect to specific design parameters. Moreover, the present analysis clearly points out that neglecting even small geometric variations in the filter design may produce misleading conclusions regarding the corresponding performance, with undesirable consequences in real-life applications. (C) 2018 Optical Society of America
机译:在当假设各种设计变量的随机波动的随机上下文中,在随机上下文中进行数字地研究具有谐振波导光栅的光学过滤器的性能。具体地,我们推导了基于多项式混沌扩展的随机模型,其涉及系数通过稀疏 - 网格正交计算光谱投影来获得。后者利用严格耦合波分析求解器的纯粹确定结果,并且需要比标准蒙特卡罗(MC)技术更少的模拟数据。滤波器的光谱响应的统计瞬间可靠地计算,因为与MC分析验证的参考结果的比较,并且Sobol指数的提取揭示了对特定设计参数的结构的敏感性。此外,本分析明确指出,忽略过滤器设计中的甚至小的几何变化可能会产生关于相应性能的误导性结论,具有不良的现实应用中的不良后果。 (c)2018年光学学会

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