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Measurement and calculation of the two-dimensional backscattering Mueller matrix of a turbid medium

机译:混浊介质的二维反向散射穆勒矩阵的测量与计算

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摘要

We present both experimental and Monte Carlo–based simulation results for the diffusely backscattered intensity patterns that arise from illumination of a turbid medium with a polarized laser beam. A numerical method that allows the calculation of all 16 elements of the two-dimensional Muller matrix is used; moreover, it is shown that only seven matrix elements are independent. To validate our method, we compared our simulations with experimental measurements, using a turbid medium consisting of 2.02‐µm-diameter polystyrene spheres suspended in deionized water. By varying the incident polarization and the analyzer optics for the experimental measurements, we obtained the diffuse backscattering Mueller matrix elements. The experimental and the numerical results are in good agreement.
机译:我们给出了基于散射和反向散射强度模式的实验和基于蒙特卡洛的模拟结果,这些强度模式是由偏振激光束照射浑浊的介质而产生的。使用一种允许计算二维穆勒矩阵的所有16个元素的数值方法。此外,表明仅七个矩阵元素是独立的。为了验证我们的方法,我们将混浊的介质(直径为2.02 µm的聚苯乙烯球悬浮在去离子水中)与实验测量值进行了比较。通过改变入射偏振和用于实验测量的分析仪光学器件,我们获得了散射反向散射Mueller矩阵元素。实验与数值结果吻合良好。

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