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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Regular boundary integral formulation for the analysis of open dielectric/optical waveguides
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Regular boundary integral formulation for the analysis of open dielectric/optical waveguides

机译:规则边界积分公式,用于分析开放式介质/光波导

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摘要

A regular boundary element method is employed for the variational formulation of the Helmholtz equation that governs waveguiding problems. The problems are defined on the boundary as usual, but as in the charge simulation method, the source points associated with the fundamental solutions are allocated outside the domain so that the singular integrals which occur in the standard boundary element procedure can be avoided. First, the formulation is developed for the two-dimensional (2-D) scalar Helmholtz problem, solving for the axial components of either electric or magnetic fields. Then the formulation is extended for the analysis of dielectric waveguides of the open type incorporating axial components of both electric and magnetic fields, for the solution of the propagating modes which are generally of hybrid types. Very close agreements have been found when the solutions obtained by the present formulation are compared with the ones obtained by different methods. One merit of the extended formulation is that it has been fixed to suppress the spurious solutions.
机译:常规的边界元方法用于控制波导问题的亥姆霍兹方程的变分形式。这些问题通常在边界上定义,但是如在电荷模拟方法中一样,与基本解相关的源点分配在域外,从而可以避免在标准边界元程序中出现奇异积分。首先,针对二维(2-D)标量亥姆霍兹问题开发公式,以解决电场或磁场的轴向分量。然后,扩展该公式以分析包含电场和磁场的轴向分量的开放型介质波导,以解决通常为混合类型的传播模式。当将通过本制剂获得的溶液与通过不同方法获得的溶液进行比较时,已经发现非常接近的协议。扩展公式的一个优点是它已被固定以抑制杂散解。

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