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首页> 外文期刊>Applied optics >PROBABILISTIC MODEL OF MULTIPLE LIGHT SCATTERING BASED ON RIGOROUS COMPUTATION OF THE FIRST AND THE SECOND MOMENTS OF PHOTON COORDINATES
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PROBABILISTIC MODEL OF MULTIPLE LIGHT SCATTERING BASED ON RIGOROUS COMPUTATION OF THE FIRST AND THE SECOND MOMENTS OF PHOTON COORDINATES

机译:基于光子坐标第一和第二矩的严格计算的多光散射概率模型

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摘要

We consider a concise method based on recurrent relations that permit rigorous computing of the first and the second moments of the components of the vector locating a randomly walking photon in an infinite homogeneous light-scattering medium. On assumption that the components obey a three-dimensional Gaussian distribution a probability density for the photon locations at the Nth scattering event can readily be written down and the light-intensity distribution in the medium may be calculated. The results from theoretical analyses are compared with the solution of a light-diffusion equation and with results of Monte Carlo simulations and show a better fit with simulated data than the diffusion approximation. (C) 1996 Optical Society of America [References: 7]
机译:我们考虑一种基于递归关系的简洁方法,该方法允许对在无限均匀光散射介质中定位随机行走的光子的矢量分量的第一和第二矩进行严格计算。在假设组件服从三维高斯分布的情况下,可以容易地写下第N次散射事件中光子位置的概率密度,并可以计算介质中的光强度分布。理论分析的结果与光扩散方程的解以及蒙特卡罗模拟的结果进行了比较,与扩散近似相比,与模拟数据的拟合度更高。 (C)1996年美国眼镜学会[参考文献:7]

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