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A 3D spatial spectral integral equation method for electromagnetic scattering from finite objects in a layered medium

机译:分层介质中有限物体电磁散射的3D空间光谱积分方程方法

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摘要

The generalization of a two-dimensional spatial spectral volume integral equation to a three-dimensional spatial spectral integral equation formulation for electromagnetic scattering from dielectric objects in a stratified dielectric medium is explained. In the spectral domain, the Green function, contrast current density, and scattered electric field are represented on a complex integration manifold that evades the poles and branch cuts that are present in the Green function. In the spatial domain, the field-material interactions are reformulated by a normal-vector field approach, which obeys the Li factorization rules. Numerical evidence is shown that the computation time of this method scales as $$O(N log N)$$ O ( N log N ) on the number of unknowns. The accuracy of the method for three numerical examples is compared to a finite element method reference.
机译:解释了将二维空间谱体积积分方程推广为三维空间谱积分方程的公式,以用于分层介质中介电物体的电磁散射。在光谱域中,格林函数,对比电流密度和散射电场表示在一个复杂的积分歧管上,该歧管避开了格林函数中存在的极点和分支切口。在空间域中,通过遵循Li分解规则的法向矢量场方法来重新构造场-材料相互作用。数值证据表明,该方法的计算时间与未知数成比例为$$ O(N log N)$$ O(N log N)。将三个数值示例的方法的准确性与有限元方法参考进行了比较。

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