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Volume integral equation for electromagnetic scattering: Rigorous derivation and analysis for a set of multilayered particles with piecewise-smooth boundaries in a passive host medium

机译:电磁散射的体积积分方程:一组多层粒子的严格推导和分析,其在无源宿主介质中的分段平滑边界

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摘要

We present a general derivation of the frequency-domain volume integral equation (VIE) for the electric field inside a nonmagnetic scattering object from the differentialMaxwell equations, transmission boundary conditions, radiation condition at infinity, and locally-finite-energy condition. The derivation applies to an arbitrary spatially finite group of particles made of isotropic materials and embedded in a passive host medium, including those with edges, corners, and intersecting internal interfaces. This is a substantially more general type of scatterer than in all previous derivations. We explicitly treat the strong singularity of the integral kernel, but keep the entire discussion accessible to the applied scattering community. We also consider the known results on the existence and uniqueness of VIE solution and conjecture a general sufficient condition for that. Finally, we discuss an alternative way of deriving the VIE for an arbitrary object by means of a continuous transformation of the everywhere smooth refractive-index function into a discontinuous one. Overall, the paper examines and pushes forward the state-of-the-art understanding of various analytical aspects of the VIE.
机译:我们向不同的频散射物方程,传输边界条件,无穷大的辐射条件以及局部有限能量条件的非磁性散射物体内部的频域体积积分方程(VIE)的一般推导。衍生适用于由各向同性材料制成的任意空间有限组颗粒,并嵌入无源宿主介质中,包括具有边缘,角落和与内部接口相交的那些。这是一个比以前的所有衍生在所有先前的衍生中大致更普通的散射体。我们明确地对待积分内核的强烈奇点,但保持了应用散射界的全部讨论。我们还考虑了vie解决方案存在和唯一性的已知结果,并为此猜测一般充分条件。最后,我们讨论了通过连续转换为无间断的折射率函数的连续转换来讨论vie的替代方法。总体而言,该论文审查并推动了对兽医各种分析方面的最先进的了解。

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