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Time correlations of coherent radiation propagating through a randomly inhomogeneous layer

机译:相干辐射通过随机非均匀层传播的时间相关性

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The intensity and the time correlation function of radiation transmitted through a layer of a randomly inhomogeneous medium are determined by numerical simulation of the Bethe-Salpeter equation for scalar and electromagnetic fields. The results of simulation agree well with the available experimental data. The domain of validity is determined numerically for the hypothesis of the diffusion approximation on the replacement of the extinction length by the transport length as a characteristic spatial scale for systems with the anisotropic scattering cross section. The polarized and depolarized components of the time correlation function of the transmitted light are calculated for the first time for different anisotropy parameters. It is shown that, to describe the residual polarization of transmitted light taking into account anisotropy, it is insufficient to perform the scale replacement of the extinction length by the transport length.
机译:通过对标量和电磁场进行Bethe-Salpeter方程的数值模拟,可以确定通过随机非均匀介质层传输的辐射的强度和时间相关函数。仿真结果与现有实验数据吻合良好。对于扩散各向异性的假设,数值范围确定了有效范围,该假设是将具有运输长度的消光长度替换为具有各向异性散射截面的系统的特征空间尺度。对于不同的各向异性参数,第一次计算透射光的时间相关函数的偏振和去偏振分量。示出了,为了描述考虑到各向异性的透射光的剩余偏振,不足以执行消光长度与传输长度的比例替换。

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