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Numerical analysis of Bragg polarization gratings

机译:布拉格极化光栅的数值分析

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Here we study Bragg regime polarization gratings (PGs) using an anisotropic rigorous coupled-wave analysis method. We simulate the most important diffraction properties without paraxial approximation, including the angular, spectral, and polarization responses. We first focus on the angular and spectral bandwidths of the transmissive and reflective Bragg PGs optimized for normal incidence. The effects of material birefringence and average index of refraction were investigated. Second, we examine the nonideal Bragg PGs with nonplanar director profiles and identified degradation in optical performance due to the high tilt of the liquid crystal director. Third, we simulate the polarization response of both types of Bragg PGs and observed complicated angular dependence of the polarization output. Qualitatively, good agreement can be observed between the simulation results and prior experimental work. Finally, we fit the measured angular and polarization data to retrieve actual grating parameters and demonstrated excellent quantitative correspondence, which can be particularly useful in closing the gap between design and fabrication. (C) 2019 Optical Society of America
机译:在这里,我们使用各向异性的严格耦合波分析方法研究布拉格制度极化光栅(PGS)。我们模拟了最重要的衍射性能,没有近似近似,包括角度,光谱和极化响应。我们首先专注于针对正常发病率优化的透射和反射布拉格PGS的角度和光谱带宽。研究了材料双折射和平均折射指数的影响。其次,我们用非Planar导轨配置文件检查Nonideal布拉格PGS,并通过液晶导向器的高倾斜而识别光学性能的降低。第三,我们模拟了两种类型的布拉格PGS的极化响应,并观察到偏振输出的复杂角度依赖性。在定性方面,在模拟结果和现有的实验工作之间可以观察到良好的一致性。最后,我们拟合测量的角度和偏振数据来检索实际光栅参数,并展示出色的定量对应,这在闭合设计和制造之间的间隙方面可以特别有用。 (c)2019年光学学会

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