Terahertz Shielding Prediction of Id-Periodic N Anolayered Coatings by an Effective Homogeneous Model

A. Aloia, M. Amore, M. S. Sarto
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引用次数: 4

Abstract

An innovative effective-medium model of ID-periodic multilayer coatings is developed by applying the transmission line method. Each period consisting of several layers with subwavelength thickness in the nanometer range is modelled as a homogeneous medium characterized by an effective complex conductivity and unit relative permeability. The resulting effective single layer (ESL), having the same total thickness of the multilayer laminate, is represented by a transfer matrix given by the product of the transmission matrices of the periods composing the structure. The effective homogeneous model is used to compute the shielding effectiveness of ID-periodic photonic-band-gap transparent coatings made by alternating layers of silver and zinc oxide films in the frequency range up to 10 THz. The good accuracy of the results obtained using the ESL is demonstrated by comparison with the results computed by means of the rigorous multilayer formulation.
用有效均匀模型预测id周期N层涂层的太赫兹屏蔽性能
应用传输线法,建立了一种创新的id周期多层涂层有效介质模型。每个周期由几个亚波长厚度在纳米范围内的层组成,被建模为具有有效复合电导率和单位相对渗透率的均匀介质。所得的有效单层(ESL)具有相同的多层层合板的总厚度,由组成结构的周期的传输矩阵的乘积给出的传递矩阵表示。利用有效均匀模型计算了在10thz频率范围内由银和氧化锌薄膜交替制备的id周期光子带隙透明涂层的屏蔽效果。通过与严格的多层公式计算结果的比较,证明了ESL计算结果具有良好的准确性。
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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