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Description and time reduction of a Monte Carlo code to simulate propagation of polarized light through scattering media

机译:蒙特卡洛代码的描述和减少时间,以模拟偏振光通过散射介质的传播

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Propagation of polarized light through a scattering medium has been studied with a Monte Carlo code to obtain polarized backscattered images. Studies of these backscattered patterns obtained with polarized illumination can be used as a technique to characterize the medium anisotropy factor g. First we present the different steps of the Monte Carlo simulation that describe polarized light propagation in a turbid medium. Monte Carlo is a good tool to simulate the backscattered polarized light but is time-consuming. Therefore, we consider two ways to decrease the computation time. The first way deals with angle sampling of the light direction. The second takes advantage of backscattered image symmetry to divide the simulation time by a factor of 4. By combining these two techniques we significantly decrease the code computation time. (C) 2003 Optical Society of America. [References: 13]
机译:偏振光通过散射介质的传播已经用蒙特卡罗编码进行了研究,以获得偏振反向散射图像。对通过偏振照明获得的这些反向散射图案的研究可以用作表征介质各向异性因子g的技术。首先,我们介绍了蒙特卡洛模拟的不同步骤,这些步骤描述了偏振光在混浊介质中的传播。蒙特卡洛是模拟反向散射偏振光的好工具,但很费时间。因此,我们考虑两种减少计算时间的方法。第一种方法处理光方向的角度采样。第二种方法利用后向散射图像对称性将仿真时间除以4。通过结合这两种技术,我们可以显着减少代码计算时间。 (C)2003年美国眼镜学会。 [参考:13]

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