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Generalized propagation of light through optical systems. I. Mathematical basics

机译:光通过光学系统的一般传播。一,数学基础

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The propagation of an input field through tilted and curved surfaces is presented and applied for a field tracing routine. This routine employs a ray tracing method for optimal coordinate customization, which is done due to the strong linear phase terms that arise because of tilted coordinates on one hand and the possibility of an application of fast numerical routines on the other. Several methods are proposed on how to optimize the field sampling during the propagation process, as for the astigmatic phase front problem and the curvature of the surface itself. Two solution methods are given to propagate from the curved surface through the homogeneous space to another two-dimensional submanifold. The approach is fully vectorial, Maxwell exact excluding only surface curvature terms for the Fresnel coefficients. A simple numerical propagation example is given. (C) 2015 Optical Society of America
机译:呈现了输入场通过倾斜和弯曲表面的传播,并将其应用于场跟踪例程。此例程采用射线跟踪方法进行最佳坐标自定义,这是由于一方面由于倾斜的坐标而产生强线性相位项,另一方面由于可能应用快速数值例程而实现的。针对像散相前问题和表面本身的曲率,提出了几种在传播过程中如何优化场采样的方法。给出了两种解决方法,从曲面通过同构空间传播到另一个二维子流形。该方法是完全矢量的,Maxwell精确地排除了菲涅耳系数的仅表面曲率项。给出了一个简单的数值传播示例。 (C)2015年美国眼镜学会

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