Full wave analysis of HTS superconducting microstrip transmission lines using spectral-domain immittance approach

A.I. Amora, H. Ghali
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引用次数: 2

Abstract

This paper presents a modified spectral domain immittance approach method used for full-wave analysis of high-temperature superconducting microstrip transmission lines. A strip transformation technique is used to transform the thin superconducting film into infinitely thin strip of infinite conductivity. In this technique the superconducting strip is treated as an impedance sheet which introduces new boundary conditions at the surface of the strip. Enforcing these new boundary conditions in the Fourier domain introduces some modification to the diagonal elements of the Green's impedance matrix, in the spectral domain, of the microstrip structure. An efficient computer program was developed to search for the complex roots of eigenvalue equation using Muller's method. The effective dielectric constant for several HTS microstrip transmission lines were computed using our program. The comparison between these results and published data indicated the validity of our program in estimating the dispersion characteristics of superconducting microstrip lines having high film-to-substrate thickness ratio.
用谱域阻抗法分析高温超导微带传输线的全波
本文提出了一种用于高温超导微带传输线全波分析的改进谱域阻抗法。采用条带转化技术将超导体薄膜转化为具有无限导电性的无限薄条带。在该技术中,超导带被视为一个阻抗片,在带的表面引入了新的边界条件。在傅里叶域中执行这些新的边界条件引入了对微带结构的谱域中格林阻抗矩阵的对角元素的一些修改。开发了一个利用穆勒法求解特征值方程复根的高效计算机程序。应用程序计算了几种高温超导微带传输线的有效介电常数。将所得结果与已发表的数据进行了比较,结果表明我们的程序在估计高膜基厚度比超导微带线色散特性方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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