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A Local Model of Light Interaction with Transparent Crystalline Media

机译:与透明晶体介质相互作用的光的局部模型

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The paper is devoted to the derivation of a bidirectional distribution function for crystals, which specifies all outgoing rays for a ray coming to the boundary of two transparent crystalline media with different optical properties, i.e., a particular mineral, directions of optical axes if they exist, and other features. A local model of interaction based on the notion of polarized light ray is introduced, which is specified by a geometric ray, its polarization state, light intensity, and so on. The computational algorithm that is suggested allows computing the directions and other properties of all (up to four) outgoing rays. In this paper, isotropic, uniaxial, and biaxial crystals are processed in a similar manner. The correctness of the model is validated by comparison of photos of real uniaxial crystals with corresponding computed images. The case of biaxial crystals is validated by testing the effect of conical refraction. Specifications of a series of tests devoted to rendering of optically different objects is presented also.
机译:本文致力于推导晶体的双向分布函数,该函数指定了光线的所有出射光线,这些光线到达具有不同光学特性(即特定矿物)的两个透明晶体介质的边界(如果存在)的光轴方向,以及其他功能。介绍了一种基于偏振光线概念的交互作用的局部模型,该模型由几何射线,其偏振态,光强度等指定。建议的计算算法允许计算所有(最多四个)出射光线的方向和其他属性。在本文中,以类似的方式处理各向同性,单轴和双轴晶体。通过将真实单轴晶体的照片与相应的计算图像进行比较,可以验证模型的正确性。通过测试锥形折射的效果可以验证双轴晶体的情况。还介绍了专门用于渲染光学不同对象的一系列测试的规范。

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