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An efficient approach for reflectivity and coupling computation in an abruptly ended planar layered waveguide using modified formulation of CGF-RFFM

机译:使用CGF-RFFM的修正制剂的突然结束平面层状波导中的反射率和耦合计算的有效方法

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An efficient method for computation of surface wave (SW) reflectivity and coupling in an abruptly ended planar layered waveguide is presented. Using characteristic Green's function (CGF) technique, the original structure is approximated by a separable structure. Then by applying rational function fitting method (RFFM) a uniform and closed-form expression of spatial Green's function for separable structure is derived. Having a full wave solution of the original structure, an optimization problem is defined to find the reflection coefficients of SW modes. Unlike the previous presented CGF based method called CGF-complex images (CI), CGF-RFFM leads to easy incorporation of radiation modes effects in the optimization step and more accurate results consequently. The CGF-RFFM derivation is also modified to incorporate the coupling matrix of SWs to obtain the coupling coefficients. Simple implementation, high accuracy as well as generality of the method are the main advantages of the proposed method. Excellent agreements with rigorous methods are illustrated in several examples.
机译:呈现了用于计算表面波(SW)反射率和在突然的平面层叠波导中的耦合的有效方法。使用特征绿色的功能(CGF)技术,原始结构由可分离结构近似。然后,通过应用Rational Function Fitting方法(RFFM),推导出用于可分离结构的空间绿色功能的均匀和闭合形式的表达。具有原始结构的全波解决方案,定义了优化问题以找到SW模式的反射系数。与先前呈现的CGF基于CGF的方法不同,CGF-RFFM导致在优化步骤中容易地掺入优化步骤中的辐射模式效应,因此因此得到了更准确的结果。还修改CGF-RFFM衍生以结合SWS的耦合矩阵以获得耦合系数。简单的实施,高精度以及一般性的方法是所提出的方法的主要优点。几个例子中说明了与严格方法的良好协议。

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