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Modelling the propagation of electromagnetic waves across complex metamaterials in closed structures

机译:闭合结构中复合超材料跨复杂超材料的传播建模

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摘要

Metamaterials are currently one of the most popular fields in microwave technology because their particular electromagnetic properties lead to a plenty of very relevant applications, both military and civilian. Additionally, the analysis and design of microwave components based on this kind of materials is one of the more challenging problems found by the applied electromagnetism community due to the complexity introduced in the mathematical formulation by their constitutive relationships. The most general case of metamaterial is the bi-anisotropic one, where both the electric field and the electric induction simultaneously depend on the magnetic field and the magnetic induction. In this paper, we present a new and powerful Finite Element Method scheme valid for the analysis of the most general waveguides, filled with lossy bi-anisotropic linear materials. Edge elements have been used in order to prevent the appearance of spurious solutions and the final eigensystems are very sparse, thus allowing a great memory and computing time saving. (C) 2018 Elsevier B.V. All rights reserved.
机译:超材料目前是微波技术中最受欢迎的领域之一,因为它们的特定电磁特性导致了大量非常相关的应用,军事和民用。另外,基于这种材料的微波成分的分析和设计是由于其本构关系中的数学制定中引入的复杂性,所应用的电磁共义群体的较为挑战性问题之一。最常的超材料的情况是双各向异性,其中电场和电感同时取决于磁场和磁感应。在本文中,我们提出了一种新的和强大的有限元方法方案,用于分析最普遍的波导,填充有损失的双向各向异性线性材料。已经使用边缘元件以防止杂散解决方案的外观,最终的EIGensystems非常稀疏,从而允许良好的存储器和计算节省时间。 (c)2018年elestvier b.v.保留所有权利。

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