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Coated sphere scattering by geometric optics approximation

机译:涂层球面散射的几何光学近似

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摘要

A new geometric optics model has been developed for the calculation of light scattering by a coated sphere, and the analytic expression for scattering is presented according to whether rays hit the core or not. The ray of various geometric optics approximation (GOA) terms is parameterized by the number of reflections in the coating/core interface, the coating/medium interface, and the number of chords in the core, with the degeneracy path and repeated path terms considered for the rays striking the core, which simplifies the calculation. For the ray missing the core, the various GOA terms are dealt with by a homogeneous sphere. The scattering intensity of coated particles are calculated and then compared with those of Debye series and Aden-Kerker theory. The consistency of the results proves the validity of the method proposed in this work.
机译:已经开发了一种新的几何光学模型,用于计算涂层球的光散射,并根据光线是否撞击核心来表示散射的解析表达式。各种几何光学近似(GOA)项的射线由涂层/纤芯界面,涂层/介质界面和纤芯中的弦数,以及简并路径和重复路径项的反射次数来参数化光线撞击核心,从而简化了计算。对于缺少核心的射线,各种GOA术语由同质球体处理。计算涂层颗粒的散射强度,然后与Debye系列和Aden-Kerker理论的散射强度进行比较。结果的一致性证明了本文提出的方法的有效性。

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