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Photon Diffusion in Random Media and Anisotropy of Scattering in the Henyey-Greenstein and Rayleigh-Gans Models

机译:在随机介质中的光子扩散和Henyey-Greenstein和Rayleigh-Gans模型中的散射各向异性

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摘要

Monte Carlo (MC) numerical simulation is carried out for the intensity of multiply backscattered radiation as a function of the source-receiver distance for the Henyey-Greenstein (HG) and Rayleigh-Gans (RG) anisotropic scattering models. It is found that, in spite of the standard diffusive regime assumption on the universality of the description of scattering in terms of the extinction coefficient and the transport length, the multiple scattering intensity depends on the form of the phase function and on the degree of anisotropy even for systems with identical extinction coefficients and transport lengths. In this case, the results obtained by the RG phase function are more sensitive to the scattering ansisotropy than those obtained by the HG function.
机译:Monte Carlo(MC)数值模拟对于常重背散射辐射的强度,作为Henyey-Greenstein(HG)和Rayleigh-GANS(RG)各向异性散射模型的源极接收器距离的函数。 结果发现,尽管在消光系数和传输长度方面对散射描述的普遍性的标准扩散制度假设,多种散射强度取决于相位函数的形式和各向异性程度 即使对于具有相同消光系数和传输长度的系统。 在这种情况下,通过RG相位函数获得的结果对散射环节的结果比通过HG函数获得的结果更敏感。

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