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Symplectic analysis for periodical electro-magnetic waveguides

机译:周期电磁波导的辛分析

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Symplectic analysis is introduced into electro-magnetic waveguide theory, by using Hamiltonian system theory in which the transverse electric and magnetic field vectors are the dual vectors. The method can accommodate arbitrary anisotropic material and includes the interface conditions between adjacent segments of the waveguide. An electro-magnetic stiffness matrix is introduced which relates to the two ends of each segment of the waveguide. Both the pass- and stop-band stiffness matrices for plane waveguides with constant cross-section are given analytically and also a transformation matrix is given to permit abrupt changes of cross-section to occur. The variational principle is applied to obtain the segment combination algorithm needed to generate the electro-magnetic stiffness matrix related to the two ends of the fundamental periodical segment. Then the Wittrick-Williams algorithm is used to extract the eigenvalues. Thereafter, an energy band analysis is performed for a periodical waveguide, e.g., a grating, by using the symplectic eigensolutions. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 21]
机译:利用汉密尔顿系统理论,将横向电场和磁场矢量作为对偶矢量,将辛分析引入电磁波理论。该方法可以容纳任意各向异性的材料,并且包括波导的相邻段之间的界面条件。引入电磁刚度矩阵,该矩阵与波导的每个段的两端有关。解析地给出了具有恒定横截面的平面波导的通带和阻带刚度矩阵,还给出了一个转换矩阵以允许发生横截面的突变。应用变分原理来获得生成与基本周期段两端有关的电磁刚度矩阵所需的段组合算法。然后使用Wittrick-Williams算法提取特征值。此后,通过使用辛本征解对周期波导,例如光栅,进行能带分析。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:21]

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