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Analysis and Design of Three-Layer Perfect Metamaterial-Inspired Absorber Based on Double Split-Serration-Rings Structure

机译:基于双锯齿-锯齿环结构的三层完美超材料吸波材料的分析与设计

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We systematically analyzed, designed, fabricated, and measured a three-layer perfect metamaterial-inspired absorber based on the double split-serration-rings (DSSRs) structure in this communication. The equivalent circuit model was presented to demonstrate the absorbing mechanism. The characters of polarized-insensitivity, wideband, and multiband absorption for the absorber were illuminated by the angular absorptions and surface current distributions. Transformation from wideband absorption with a relative bandwidth of 93.5% from 5.34 to 14.72 GHz, of which the absorptivity was larger than 90%, to multiband absorption was obtained by rotating DSSR-II of 90°. Two absorber prototypes with a thickness of 3.6 mm had been easily implemented using the common printed circuit board fabrication techniques and measured in a microwave anechoic chamber. Simulated and experimental results indicated that the perfect metamaterial-inspired absorber performed wideband and multiband absorption when DSSRs were perpendicular and parallel to each other, respectively.
机译:在本次交流中,我们基于双裂隙锯齿环(DSSR)结构,系统地分析,设计,制造和测量了三层完美的超材料启发的吸收体。提出了等效电路模型以说明吸收机理。通过角吸收和表面电流分布,阐明了吸收体的极化不敏感,宽带和多频带吸收的特性。通过将DSSR-II旋转90°,可以从相对带宽为93.5%的宽带吸收(从5.34 GHz吸收到大于90%的14.72 GHz)转换为多频带吸收。使用常见的印刷电路板制造技术可以轻松实现两个厚度为3.6毫米的吸收器原型,并在微波消声室中对其进行测量。仿真和实验结果表明,当DSSR分别垂直和平行时,由超材料激发的完美吸收体可实现宽带吸收和多频带吸收。

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