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An Investigation of the Mutual Coupling and Tuning of a Miniaturized Metamaterial Absorber

机译:小型超材料吸收体相互耦合和调谐的研究

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This work is related to a metamaterial based microwave absorber design consisting of a single dielectric layer with a rectangular split-ring resonator and a T-type resonator printed on one side and a metal film coating on the other side. The structure is investigated to determine the effect of mutual coupling between the two resonators on the resonance frequencies. Due to the distinct resonance frequencies of the resonators, the absorber can operate in two frequency bands, i.e., 7.82 GHz and 9.65 GHz. Each of the resonance frequencies can be easily controlled by a single parameter without affecting the other. The surface current distributions at both the frequencies are presented and analysed to better understand the absorber behavior. To realize the absorber, a standard WR90 hollow waveguide (X-band) measurement setup is used. Simulation and measurement results show similar trends; differences are discussed.
机译:这项工作涉及一种基于超材料的微波吸收器设计,该设计包括一个绝缘层,该绝缘层的一侧印有矩形开口环谐振器和T型谐振器,另一侧印有金属膜涂层。研究该结构以确定两个谐振器之间的互耦合对谐振频率的影响。由于谐振器的谐振频率不同,因此吸收器可以在两个频带即7.82 GHz和9.65 GHz工作。每个谐振频率可以通过一个参数轻松控制,而不会影响另一个参数。给出并分析了两个频率下的表面电流分布,以更好地了解吸收器的行为。为了实现吸收体,使用了标准的WR90中空波导(X波段)测量装置。仿真和测量结果显示出相似的趋势。差异进行了讨论。

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