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Mueller Matrix imaging of targets in turbid media

机译:混浊介质靶标的穆勒矩阵成像

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摘要

We present a theoretical analysis on the use of polarized light in the detection of a model target in a scattering and absorbing turbid medium. Monte Carlo numerical simulations are used in the calculation of the effective Mueller matrix which describes the scattering process. Contrasts between various parts of the target and background are analyzed in the images created by ordinary radiance, by elements of the Mueller matrix and by the depolarization index. It is shown that the application of polarized light has distinct advantages in target detection and characterizatkon when compared to the use of unpolarized light.
机译:我们对在散射和吸收混浊介质中检测模型靶标的偏振光的使用理论分析。 Monte Carlo数值模拟用于计算描述散射过程的有效穆勒矩阵。在普通辐射的图像和橡胶矩阵的元件和去极化指数中,分析目标和背景的各个部分与背景之间的对比度。结果表明,与使用非偏振光相比,偏振光的应用在目标检测和特征中具有明显的优点。

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