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Triple-band polarization-independent metamaterial absorber using destructive interference

机译:利用相消干涉的三频偏振无关超材料吸收体

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In this paper, an ultra-thin triple-band microwave metamaterial absorber has been presented which consists of a composite tetra-arrow ring structure imprinted on grounded dielectric substrate. Full-wave simulation shows three distinct absorption peaks at 4 GHz, 6.54 GHz, and 11.15 GHz with absorptivities of 95.27%, 98.35%, and 97.96% respectively. The proposed structure is polarization-insensitive and highly absorptive for wide incidence angles under both TE and TM polarizations. The absorption mechanism of the proposed structure has been investigated by using multi-reflection interference theory. The designed absorber has been fabricated and experimental results are in good agreement with simulated responses enabling its wide applications in various technologies.
机译:本文提出了一种超薄三频微波超材料吸收体,该吸收体由压印在接地介电基体上的复合四箭头环结构组成。全波仿真显示在4 GHz,6.54 GHz和11.15 GHz处三个吸收峰,吸收率分别为95.27%,98.35%和97.96%。所提出的结构对偏振不敏感,并且对于TE和TM偏振下的宽入射角都具有高吸收性。利用多反射干涉理论研究了该结构的吸收机理。所设计的吸收器已经过制造,实验结果与模拟响应非常吻合,使其能够广泛应用于各种技术中。

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