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An Accurate and Systematic Surface-Wave Pole Location Method for Multilayered Media

机译:多层介质的一种精确而系统的表面波磁极定位方法

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Finding the surface-wave modes in multilayered media is a problem that is of great importance in many full-wave numerical electromagnetic solvers. In this communication, an efficient and systematic method is proposed to locate all of the surface-wave poles for general multilayered structures. It is observed that the characteristic equations can be cast into a function composed of εri, kz,i, and Ti = tan(kz,i di), where the Ti occur for the substrates that have finite thicknesses. The pole location method is carried out in the complex kzM -plane, where kzM represents the wave number, along the z-axis, for the substrate with the maximum permittivity. Two sets of critical points are determined in the kzM-plane according to the parameters of the structure. Since there is at most one pole between two consecutive critical points, these critical points establish proper limits for the zero search algorithm. Muller's method can thus be applied to find the pole between the two consecutive critical points if it exists. The proposed method is validated by means of several numerical examples.
机译:在多层介质中寻找表面波模式是一个在许多全波数值电磁求解器中非常重要的问题。在这种通信中,提出了一种有效且系统的方法来定位一般多层结构的所有表面波极。可以观察到特征方程可以转化为由ε ri ,k z,i 和T i = tan( k z,i d i ),其中Ti出现在厚度有限的基板上。极点定位方法是在复数kzM平面中执行的,其中kzM表示具有最大介电常数的基板沿z轴的波数。根据结构参数在kzM平面中确定了两组临界点。由于两个连续的临界点之间最多存在一个极点,因此这些临界点为零搜索算法建立了适当的限制。因此,如果存在,则可以使用穆勒方法来找到两个连续临界点之间的极点。数值算例验证了该方法的有效性。

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