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Fast method of retrieving the asymmetry factor and scattering albedo from the maximum time-resolved reflectance of participating media

机译:从参与介质的最大时间分辨反射率中检索不对称因子和散射反照率的快速方法

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摘要

This research presents a parametric study of the time-resolved hemispherical reflectance of a semi-infinite plane-parallel slab of homogeneous, nonemitting, absorbing, and anisotropic scattering medium exposed to a collimated Gaussian pulse. The one-dimensional transient radiative transfer equation was solved by using the finite volume method. The internal reflection at the medium-air interface caused by the mismatch of the refractive indices was considered. In particular, this work focused on the maximum diffuse hemispherical reflectance. Three different optical regions were identified according to the dimensionless pulsewidth beta ct(p). The correlation between the normalized maximum hemispherical reflectance and beta ct(p) was conformed to the Boltzmann function. The coefficients in the correlating functions of the match and mismatch refractive index cases were fitted as polynomial fitting functions of the single scattering albedo. and Henyey-Greenstein asymmetric factor g. Thus,. and g can be simultaneously reconstructed by the semi-empirical correlations without solving the forward model. In conclusion, the proposed method can potentially retrieve the asymmetry factor and single scattering albedo of participating media accurately and efficiently. (C) 2015 Optical Society of America
机译:这项研究提出了参数化研究的准均高斯脉冲的均匀,非发射,吸收和各向异性散射介质的半无限平面平行平板的时间分辨半球形反射率。利用有限体积法求解了一维瞬态辐射传递方程。考虑了由折射率的不匹配引起的介质-空气界面处的内部反射。特别地,这项工作集中在最大的漫射半球反射率上。根据无量纲脉宽βct(p)确定了三个不同的光学区域。归一化的最大半球反射率与beta ct(p)之间的相关性符合玻耳兹曼函数。将匹配和不匹配折射率情况下的相关函数中的系数拟合为单个散射反照率的多项式拟合函数。和Henyey-Greenstein不对称因子g。从而,。可以通过半经验相关性同时重建g和g,而无需求解前向模型。综上所述,该方法可以准确有效地获取参与介质的不对称因子和单次散射反照率。 (C)2015年美国眼镜学会

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