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New Absorbing Boundary Conditions and Analytical Model for Multilayered Mushroom-Type Metamaterials: Applications to Wideband Absorbers

机译:多层蘑菇型超材料的新吸收边界条件和分析模型:在宽带吸收器中的应用

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摘要

An analytical model is presented for the analysis of multilayer wire media loaded with 2-D arrays of thin material terminations, characterized in general by a complex surface conductivity. This includes the cases of resistive, thin metal, or graphene patches and impedance ground planes. The model is based on the nonlocal homogenization of the wire media with additional boundary conditions (ABCs) at the connection of thin (resistive) material. Based on charge conservation, new ABCs are derived for the interface of two uniaxial wire mediums with thin imperfect conductors at the junction. To illustrate the application of the analytical model and to validate the new ABCs, we characterize the reflection properties of multilayer absorbing structures. It is shown that in such configurations the presence of vias results in the enhancement of the absorption bandwidth and an improvement in the absorptivity performance for increasing angles of an obliquely incident TM-polarized plane wave. The results obtained using the analytical model are validated against full-wave numerical simulations.
机译:提出了一种分析模型,用于分析装有薄材料终端的二维阵列的多层线介质,通常以复杂的表面导电性为特征。这包括电阻性,薄金属或石墨烯贴片和阻抗接地层的情况。该模型基于在薄(电阻)材料的连接处具有附加边界条件(ABC)的线材的非局部均质化。基于电荷守恒,在两个单轴导线介质的交界处具有薄的不完善导体的界面上,将导出新的ABC。为了说明分析模型的应用并验证新的ABC,我们表征了多层吸收结构的反射特性。结果表明,在这样的配置中,通孔的存在导致吸收带宽的增加以及对于倾斜入射的TM偏振平面波的角度增大的吸收性能的改善。使用分析模型获得的结果已针对全波数值模拟进行了验证。

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