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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A multi-band binary radar absorbing metamaterial based on a 3D low-permittivity all-dielectric structure
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A multi-band binary radar absorbing metamaterial based on a 3D low-permittivity all-dielectric structure

机译:基于3D低介电常数的基于3D低介电常数的多频段二进制雷达吸收超材料

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摘要

A new binary-structured metamaterial absorber (MA), consisting of a 3D cross-shaped dielectric (CSD) periodic array and a metal back plane, is proposed and fabricated. This structure realized six resonant absorption peaks below -10dB in the range of 8-18 GHz. Both simulated and experimental results demonstrate the effectiveness of this design in generating multiband and low frequency absorption, which is difficult to achieve in previous 2D dielectric absorbers. The electromagnetic(EM) field and energy loss density distributions of absorption peaks were investigated as well as effects of structural parameters on the reflection loss spectra. It indicated that multimode resonance is generated by standing waves in the 3D dielectric structure. Moreover, since the structure is made of a low-permittivity dielectric resin, the fabrication is relatively easy and low-cost. The design of a three-dimensional low-permittivity all-dielectric structure described in this work has potential applications in the EM energy capture and stealth fields. (C) 2019 Published by Elsevier B.V.
机译:提出并制造由3D交叉形电介质(CSD)周期阵列和金属背平面组成的新的二进制结构超材料吸收体(MA)。该结构实现了8-18GHz的范围低于-10dB的六个谐振吸收峰。模拟和实验结果均展示了这种设计在发电多频带和低频吸收时的有效性,这难以在先前的2D介电吸收器中实现。研究了电磁(EM)场和能量损失密度分布以及结构参数对反射损耗光谱的影响。它表明,通过在3D介电结构中的驻距波来产生多模谐振。此外,由于结构由低介电常数介电树脂制成,因此制造相对容易和低成本。本工作中描述的三维低介电常数全介电结构的设计具有EM能量捕获和隐形领域的潜在应用。 (c)2019年由elestvier b.v发布。

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