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General polarized ray-tracing method for inhomogeneous uniaxially anisotropic media

机译:非均匀单轴各向异性介质的通用偏振射线追踪方法

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摘要

Uniaxial optical anisotropy in the geometrical-optics approach is a classical problem, and most of the theory has been known for at least fifty years. Although the subject appears frequently in the literature, wave propagation through inhomogeneous anisotropic media is rarely addressed. The rapid advances in liquid-crystal lenses call for a good overview of the theory on wave propagation via anisotropic media. Therefore, we present a novel polarized ray-tracing method, which can be applied to anisotropic optical systems that contain inhomogeneous liquid crystals. We describe the propagation of rays in the bulk material of inhomogeneous anisotropic media in three dimensions. In addition, we discuss ray refraction, ray reflection, and energy transfer at, in general, curved anisotropic interfaces with arbitrary orientation and/or arbitrary anisotropic properties. The method presented is a clear outline of how to assess the optical properties of uniaxially anisotropic media.
机译:几何光学方法中的单轴光学各向异性是一个经典问题,大多数理论至少已有50年了。尽管该主题在文献中经常出现,但很少解决通过非均质各向异性介质的波传播问题。液晶透镜的飞速发展要求对通过各向异性介质的波传播理论进行很好的概述。因此,我们提出了一种新颖的偏振射线追踪方法,该方法可以应用于包含不均匀液晶的各向异性光学系统。我们从三个维度描述了射线在非均质各向异性介质块状材料中的传播。另外,我们讨论了具有任意方向和/或任意各向异性特性的弯曲各向异性界面上的光线折射,光线反射和能量转移。提出的方法清楚地概述了如何评估单轴各向异性介质的光学特性。

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