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首页> 外文期刊>Applied numerical mathematics >A high-order perturbation of surfaces (HOPS) approach to Fokas integral equations: Vector electromagnetic scattering by periodic crossed gratings
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A high-order perturbation of surfaces (HOPS) approach to Fokas integral equations: Vector electromagnetic scattering by periodic crossed gratings

机译:Fokas积分方程的高阶表面扰动(HOPS)方法:周期性交叉光栅的矢量电磁散射

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摘要

The accurate simulation of linear electromagnetic scattering by diffraction gratings is crucial in many technologies of scientific and engineering interest. In this contribution we describe a High-Order Perturbation of Surfaces (HOPS) algorithm built upon a class of Integral Equations due to the analysis of Fokas and collaborators, now widely known as the Unified Transform Method. The unknowns in this formalism are boundary quantities (the electric field and current at the layer interface) which are an order of magnitude fewer than standard volumetric approaches such as Finite Differences and Finite Elements. With detailed numerical experiments we show the efficiency, fidelity, and high-order accuracy one can achieve with an implementation of this algorithm.
机译:衍射光栅对线性电磁散射的精确模拟对于许多科学和工程技术至关重要。在本文中,由于对Fokas和合作者的分析,我们描述了基于一类积分方程的高阶表面扰动(HOPS)算法,该算法现在被称为统一变换方法。这种形式主义中的未知数是边界量(层界面处的电场和电流),其数量比标准体积方法(如有限差分和有限元素)小一个数量级。通过详细的数值实验,我们证明了使用该算法可以实现的效率,保真度和高阶精度。

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