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Equivalent-Circuit Models for the Design of Metamaterials Based on Artificial Magnetic Inclusions

机译:基于人工磁夹杂物的超材料设计等效电路模型

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摘要

In this paper, we derive quasi-static equivalent-circuit models for the analysis and design of different types of artificial magnetic resonators驴i.e., the multiple split-ring resonator, spiral resonator, and labyrinth resonator驴which represent popular inclusions to synthesize artificial materials and metamaterials with anomalous values of the permeability in the microwave and millimeter-wave frequency ranges. The proposed models, derived in terms of $RLC$ equivalent circuits, represent an extension of the models presented in a recent publication. In particular, the extended models take into account the presence of a dielectric substrate hosting the metallic inclusions and the losses due to the finite conductivity of the conductors and the finite resistivity of the dielectrics. Exploiting these circuit models, it is possible to accurately predict not only the resonant frequency of the individual inclusions, but also their quality factor and the relative permeability of metamaterial samples made by given arrangements of such inclusions. Finally, the three models have been tested against full-wave simulations and measurements, showing a good accuracy. This result opens the door to a quick and accurate design of the artificial magnetic inclusions to fabricate real-life metamaterial samples with anomalous values of the permeability.
机译:在本文中,我们推导了准静态等效电路模型,用于分析和设计不同类型的人造磁谐振器驴,多开口环谐振器,螺旋谐振器和迷宫谐振器驴,它们代表了合成人造材料的常用夹杂物以及在微波和毫米波频率范围内磁导率值异常的超材料。以$ RLC $等效电路表示的拟议模型代表了最近出版物中提出的模型的扩展。特别地,扩展模型考虑了容纳金属夹杂物的电介质基板的存在以及由于导体的有限电导率和电介质的有限电阻率引起的损耗。利用这些电路模型,不仅可以准确地预测单个夹杂物的共振频率,而且可以准确预测它们的品质因数和通过此类夹杂物的给定排列制成的超材料样品的相对磁导率。最后,这三个模型已经针对全波模拟和测量进行了测试,显示出良好的准确性。这一结果为快速,准确地设计人造磁夹杂物打开了大门,以制造具有异常磁导率值的现实生活中的超材料样品。

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