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Rigorous boundary integral equation solution for general isotropic and uniaxial anisotropic dielectric waveguides in multilayered media including losses, gain and leakage

机译:多层介质中各向同性和单轴各向异性介质波导的严格边界积分方程解,包括损耗,增益和泄漏

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摘要

Bounded and leaky eigenmodes of arbitrary shaped polygonal dielectric waveguides embedded in a multilayered medium are determined based on a rigorous full-wave analysis. The dielectric waveguides consist of isotropic or uniaxial anisotropic material. Losses and gain inside the layers and the waveguides are allowed. The eigenmodes are determined with a boundary integral equation technique in conjunction with the method of moments. Results for the propagation constants are presented for a number of waveguides and, where possible, compared with published data. Special attention is devoted to the transition from a dielectric waveguide to a perfectly conducting waveguide when the loss tangent of the waveguide material changes from zero to infinity.
机译:基于严格的全波分析,确定嵌入多层介质中的任意形状的多边形介质波导的有界和泄漏本征模。介电波导由各向同性或单轴各向异性材料组成。允许层和波导内部的损耗和增益。本征模由边界积分方程技术和矩量法确定。给出了许多波导的传播常数结果,并在可能的情况下与已发布的数据进行了比较。当波导材料的损耗角正切从零变为无穷大时,将特别注意从介电波导到完美导电的波导的过渡。

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