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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >An An overview of methods for deriving the radiative transfer theory from the Maxwell equations. II: Approach based on the Dyson and Bethe-Salpeter equations
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An An overview of methods for deriving the radiative transfer theory from the Maxwell equations. II: Approach based on the Dyson and Bethe-Salpeter equations

机译:从麦克斯韦方程导出辐射转移理论的方法概述。 II:基于Dyson和Bethe-Salpeter方程的方法

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In this paper, the vector radiative transfer equation is derived by means of the vector integral Foldy equations describing the electromagnetic scattering by a group of particles. By assuming that in a discrete random medium the positions of the particles are statistically independent and by applying the Twersky approximation to the order-of-scattering expansion of the total field, we derive the Dyson equation for the coherent field and the ladder approximated Bethe-Salpeter equation for the dyadic correlation function. Then, under the far-field assumption for sparsely distributed particles, the Dyson equation is reduced to the Foldy integral equation for the coherent field, while the iterated solution of the Bethe-Salpeter equation ultimately yields the vector radiative transfer equation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,借助于通过一组颗粒的电磁散射的矢量积分折叠方程导出矢量辐射转移方程。 假设在离散随机介质中,颗粒的位置在统计上独立,并且通过将Twersky近似施加到总场的散射次膨胀,我们导出了相干场和梯形近似的达到达到达到达到的 几种相关函数的马门计方程。 然后,在稀疏分布颗粒的远场假设下,透明度方程被减少到相干场的折叠整体方程,而贝特 - 卡塞计方程的迭代解有最终产生矢量辐射转移方程。 (c)2018年elestvier有限公司保留所有权利。

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