首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Generalized spectral-domain analysis for multilayered complex media and high-T/sub c/ superconductor applications
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Generalized spectral-domain analysis for multilayered complex media and high-T/sub c/ superconductor applications

机译:多层复杂介质和高T / sub c /超导体应用的广义光谱域分析

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摘要

An efficient algorithm for rigorously deriving the spectral-domain impedance dyadic Green's function for MMICs on general complex anisotropic or bi-anisotropic substrates is developed. Its main advantage is that it provides closed-form expressions for transverse propagation constants and related immittances in the spectral domain and, therefore, allows the following parameters to be taken into account: dielectric and magnetic losses of anisotropic or bi-anisotropic media without restrictions to the magnitude of tensor elements, alternative directions for magnetic bias, and the finite metallization thickness of conventional conductors and/or superconductors including their losses. Microstrip and coplanar waveguide structures in open, shielded, and conductor-backed technology can be treated. The theory is verified by comparison with previously published data, and its flexibility is demonstrated for both superconductor and conventional conductor (M)MIC structures.
机译:开发了一种有效的算法,可以严格推导一般复杂的各向异性或双各向异性衬底上的MMIC的谱域阻抗二进格林函数。它的主要优点是,它为谱域中的横向传播常数和相关的阻抗提供封闭形式的表达式,因此可以考虑以下参数:各向异性或双各向异性介质的介电和磁损耗张量元素的大小,磁偏置的替代方向以及常规导体和/或超导体的有限金属化厚度(包括其损耗)。可以处理开放,屏蔽和导体支持技术中的微带和共面波导结构。通过与先前发表的数据进行比较,验证了该理论,并证明了其对于超导体和常规导体(M)MIC结构的灵活性。

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