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An approximate method for solving the vector radiative transfer equation in discrete random media

机译:求解离散随机介质中矢量辐射传递方程的一种近似方法

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摘要

Analytical expressions for the specific intensity of circularly polarized optical waves propagating in discrete random media are obtained by approximately solving the vector radiative transfer equation. The proposed method extends the solution for scalar waves to include polarization effects and facilitates calculations of multiply scattered incoherent intensities over a wide range of optical depths. To derive simple analytical solutions for given particle sizes, we first separate the first-order solution or small-angle solution from the solution to be obtained. We then expand the remainder, which includes the higher order multiple scattering, in terms of the generalized spherical functions. The first two terms of the expansion are retained, and the resulting vector diffusion equation is solved analytically. Approximate solutions for both the copolarized and cross-polarized specific incoherent intensities are shown to be in good agreement with numerical solutions for almost arbitrary optical depths.
机译:通过近似求解矢量辐射传递方程,可以得到在离散随机介质中传播的圆偏振光波的比强度的解析表达式。所提出的方法扩展了标量波的解决方案,以包括偏振效应,并有助于在较宽的光学深度范围内计算多重散射的非相干强度。为了获得给定粒径的简单分析溶液,我们首先将一阶溶液或小角度溶液与要获得的溶液分开。然后,根据广义球面函数,扩展包括高阶多次散射在内的其余部分。保留扩展的前两个项,并通过解析求解所得的矢量扩散方程。已证明,对于几乎任意光学深度,同极化和交叉极化的特定非相干强度的近似解都与数值解非常吻合。

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