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Depolarization of light in turbid media: a scattering event resolved Monte Carlo study

机译:浑浊介质中光的去极化:散射事件解决了蒙特卡洛研究

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摘要

Details of light depolarization in turbid media were investigated using polarization-sensitive Monte Carlo simulations. The surviving linear and circular polarization fractions of photons undergoing a particular number of scattering events were studied for different optical properties of the turbid media. It was found that the threshold number of photon scattering interactions that fully randomize the incident polarization (defined here as <1percent surviving polarization fraction) is not a constant, but varies with the photon detection angle. Larger detection angles, close to backscattering direction, show lower full depolarization threshold number for a given set of sample's optical properties. The Monte Carlo simulations also confirm that depolarization is not only controlled by the number of scattering events and detection geometry, but is also strongly influenced by other factors such as anisotropy g, medium linear birefringence, and the polarization state of the incident light.
机译:使用偏振敏感的蒙特卡洛模拟研究了混浊介质中光去极化的细节。针对混浊介质的不同光学特性,研究了经历特定数量散射事件的光子的幸存的线性和圆偏振分数。已经发现,完全随机化入射偏振的光子散射相互作用的阈值数量(这里定义为<1%的剩余偏振分数)不是一个常数,而是随光子检测角度而变化的。对于给定的一组样品光学特性,较大的检测角(接近反向散射方向)显示出较低的全消偏振阈值。蒙特卡罗模拟还证实,去偏振不仅受散射事件的数量和检测几何形状控制,而且还受到其他因素的强烈影响,例如各向异性g,中等线性双折射和入射光的偏振状态。

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