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Three-dimensional polarization ray-tracing calculus II: retardance

机译:三维偏振射线追踪演算II:延迟

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摘要

The concept of retardance is critically analyzed for ray paths through optical systems described by a three-by-three polarization ray-tracing matrix. Algorithms are presented to separate the effects of retardance from geometric transformations. The geometric transformation described by a "parallel transport matrix" characterizes nonpolarizing propagation through an optical system, and also provides a proper relationship between sets of local coordinates along the ray path. The proper retardance is calculated by removing this geometric transformation from the three-by-three polarization ray-tracing matrix. Two rays with different ray paths through an optical system can have the same polarization ray-tracing matrix but different retardances. The retardance and diattenuation of an aluminum-coated three fold-mirror system are analyzed as an example.
机译:对于通过三分之三偏振光线追踪矩阵描述的光学系统的光线路径,严格地分析了延迟的概念。提出了将延迟的影响与几何变换分开的算法。由“平行传输矩阵”描述的几何变换表征了通过光学系统的非偏振传播,并且还提供了沿光线路径的局部坐标集之间的适当关系。通过从三乘三偏振光线跟踪矩阵中删除此几何变换,可以计算出适当的延迟。穿过光学系统的具有不同光线路径的两条光线可以具有相同的偏振光线跟踪矩阵,但具有不同的延迟。以镀铝三折镜系统的延迟和衰减为例进行分析。

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