Anisotropic Propagation of Electromagnetic Waves

Gregory A. Mitchell
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引用次数: 4

Abstract

This chapter will analyze the properties of electromagnetic wave propagation in anisotropic media. Of particular interest are positive index, anisotropic, and magneto-dielectric media. Engineered anisotropic media provide unique electromagnetic properties including a higher effective refractive index, high permeability with relatively low magnetic loss tangent at microwave frequencies, and lower density and weight than traditional media. This chapter presents research including plane wave solutions to propagation in anisotropic media, a mathematical derivation of birefringence in anisotropic media, modal decomposition of rectangular waveguides filled with anisotropic media, and the full derivation of anisotropic transverse resonance in a partially loaded waveguide. These are fundamental theories in the area of electromagnetic wave propagation that have been reformulated for fully anisotropic magneto-dielectric media. The ensuing results will aide interested parties in understanding wave behavior for anisotropic media to enhance designs for radio frequency devices based on anisotropic and magnetic media.
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电磁波的各向异性传播
本章将分析电磁波在各向异性介质中的传播特性。特别感兴趣的是正指数、各向异性和磁介电介质。工程各向异性介质提供了独特的电磁特性,包括更高的有效折射率,高磁导率,微波频率下相对较低的磁损耗切线,以及比传统介质更低的密度和重量。本章的研究包括平面波在各向异性介质中的传播解,各向异性介质中双折射的数学推导,填充各向异性介质的矩形波导的模态分解,以及部分加载波导中各向异性横向共振的完整推导。这些是电磁波传播领域的基本理论,已被重新表述为完全各向异性磁介质。研究结果将有助于有关各方了解各向异性介质的波动行为,以加强基于各向异性和磁性介质的射频器件的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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