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Universal structure of transmission eigenchannels inside opaque media

机译:不透明介质内部传输本征通道的通用结构

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As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, attention has focused on the transmission matrix of the wave field. This matrix gives the fullest account of transmission and conductance and enables the control of the transmitted flux; however, it cannot address the fundamental issue of the spatial profile of eigenchannels of the transmission matrix inside the sample. Here we obtain a universal expression for the average disposition of energy of transmission eigenchannels within random diffusive systems in terms of auxiliary localization lengths determined by the corresponding transmission eigenvalues. The spatial profile of each eigenchannel is shown to be a solution of a generalized diffusion equation. These results reveal the rich structure of transmission eigenchannels and enable the control of the energy distribution inside random media.
机译:由于探索不透明材料的愿望通常会因波的多次散射而受挫,因此注意力集中在波场的传输矩阵上。该矩阵充分考虑了传输和电导,并能够控制传输通量;但是,它不能解决样品内部传输矩阵本征通道空间分布的根本问题。在这里,我们获得了一个随机表达式中,根据相应的传输特征值确定的辅助定位长度,传输本征通道的能量平均配置的通用表达式。每个本征通道的空间轮廓显示为广义扩散方程的解。这些结果揭示了传输本征通道的丰富结构,并使得能够控制随机介质内部的能量分布。

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