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Effects of collection geometry variations on linear and circular polarization persistence in both isotropic-scattering and forward-scattering environments

机译:在各向同性散射和前向散射环境中,收集几何形状变化对线性和圆偏振持久性的影响

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摘要

We present simulation and experimental results showing circular polarization is more tolerant of optical collection geometry (field of view and collection area) variations than linear polarization for forward-scattering environments. Circular polarization also persists superiorly in the forward-scattering environment compared to linear polarization by maintaining its degree of polarization better through increasing optical thicknesses. In contrast, both linear and circular polarizations are susceptible to collection geometry variations for isotropic-scattering (Rayleigh regime) environments, and linear polarization maintains a small advantage in polarization persistence. Simulations and measurements are presented for laboratory-based environments of polystyrene microspheres in water. Particle diameters were 0.0824 mu m (for isotropic-scattering) and 1.925 mu m (for forward-scattering) with an illumination wavelength of 543.5 nm. (C) 2016 Optical Society of America
机译:我们提供的仿真和实验结果表明,对于前向散射环境,圆偏振比线性偏振更能容忍光学收集几何形状(视场和收集区域)的变化。与线性偏振相比,圆偏振在前向散射环境中也具有更好的持久性,通过增加光学厚度可以更好地保持其偏振度。相比之下,线性和圆极化都容易受到各向同性散射(瑞利政权)环境中的收集几何形状变化的影响,而线性极化在极化持久性方面保持着很小的优势。针对实验室环境中的水中聚苯乙烯微球进行了仿真和测量。粒径为0.0824微米(用于各向同性散射)和1.925微米(用于前向散射),照射波长为543.5 nm。 (C)2016美国眼镜学会

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