首页> 外文会议>Progress in electromagnetics research symposium (PIERS 2009 Moscow) >Equations for Electromagnetic Radiation Transfer in Dielectric Random Media with Effects of Near Fields and Opposite Wave Streams' Interference
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Equations for Electromagnetic Radiation Transfer in Dielectric Random Media with Effects of Near Fields and Opposite Wave Streams' Interference

机译:具有近场和相反波流干扰的介电随机介质中电磁辐射传递方程

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A radiative transfer theory for electromagnetic wave multiple scattering in dielectric random media with effects of near fields is presented. The theory is based on Sommerfeld-Weyl angular spectrum decomposition of wave amplitudes and technique of Dyson and Bethe-Salpeter equations for the ensemble averaged angular spectrum amplitudes and the coherence matrix of angular specrum amplitudes, respectively. We derive the four integral equations' system, for two autocoherences of waves propagating forward and backward with respect to embedding parameter into the medium slab and two cross-coherences of evanescent waves decaying in opposite directions. In so doing the equations for autocoherences describe basically the usual radiative transfer with wave intensity multiple scattering by random inhomogeneities (scatterers) and free path between them. In the contrary the equations for cross-coherences demonstrate a new effect of elementary evanescent waves' virtually exciting inside an inhomogeneity in pairs of opposite decaying derections and contribution of these evanescent pairs to wave energy flux.
机译:提出了一种在近场效应的介电随机介质中电磁波多重散射的辐射传递理论。该理论基于波幅度的Sommerfeld-Weyl角谱分解以及Dyson和Bethe-Salpeter方程的技术,分别用于集合平均角谱幅度和角谱幅度的相干矩阵。我们推导了四个积分方程组的系统,其中两个波的自相干性相对于将参数嵌入到介质平板中向前和向后传播,而两个van逝波的交叉相干性沿相反的方向衰减。这样做时,自相干方程基本上描述了通常的辐射传递,其中波强度是由随机不均匀性(散射体)和它们之间的自由路径引起的多重散射。相反,交叉相干方程表示基本demonstrate逝波实际上在不均匀性内部成对存在相反的衰减偏转对,并且这些e逝对对波能通量的贡献实际上具有新的激励作用。

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