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Generalized mode solver for plasmonic transmission lines embedded in layered media based on the Method of Moments

机译:基于片段方法的层状介质嵌入层压传输线的广义模式求解器

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This paper presents an integral equation formulation for the calculation of the propagation characteristics of plasmonic transmission lines embedded within a multi-layered structure. The Method of Moments (MoM) technique is adopted in this paper due to its superior advantages over other techniques including the finite difference and finite element methods. Plasmonic transmission lines consist of a number metallic strips of arbitrary shapes immersed within a stack of planar dielectric or metallic layers. These transmission lines can support one or more mode, each of which has its characteristic mode profile and it propagates with a certain propagation and attenuation constants. The developed solver is tested for different plasmonic transmission line topologies surrounded by various layered media. The obtained results are compared to CST commercial software for verification. Very good agreement between the proposed solver and CST has been observed. The developed MoM solver requires much smaller number of unknowns if compared with those based on Finite Difference Time Domain (FD-TD) or Finite Element Method (FEM) such as Lumerical and CST. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文介绍了用于计算嵌入多层结构内的等离子体传输线的传播特性的整体方程式配方。本文采用了矩(MOM)技术的方法,因为其优于与包括有限差分和有限元方法的其他技术的优势。等离子体传输线由浸没在平面电介质或金属层的堆叠内的任意形状的数量金属条。这些传输线可以支持一个或多个模式,每个模式具有其特征模式配置文件,并且它与某个传播和衰减常数传播。开发的求解器用于由各种层状介质包围的不同等离子体传输线拓扑测试。将获得的结果与CST商业软件进行比较,用于验证。已经观察到拟议的求解器和CST之间非常良好的一致性。与基于有限差分时域(FD-TD)或有限元方法(FEM)相比,开发的MOM求解器需要更少数量的未知数。 (c)2018 Elsevier B.v.保留所有权利。

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