Design and Analysis of Multi-layer Broadband Metamaterial Absorber Based on Resistive Film

Zekui Zhang, Han Zhang, Dong-hong Wang, L. Zhang, Rong Zhang, Libin Guan
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Abstract

In this paper, a multi-layer broadband metamaterial absorber based on resistive film has been designed and analysis. The absorber consists of three dielectric layers and two meta material structures. The simulation test results show that when the thickness of the multi-layer broadband metamaterial absorber designed in this paper is only 4.6mm, the absorption rate is greater than 90% in the frequency band of 7.26GHz-40GHz. Through analysising, it is found that the electromagnetic wave energy of the absorber is mainly lost through the resistance film structure, and the upper resistance film is mainly responsible for the loss of electromagnetic energy in the high frequency band, and the lower resistance film is mainly responsible for the loss of electromagnetic energy in the low frequency band. The broadband metamaterial absorber designed in this paper has a simple structure and absorption frequency bandwidth. It has important practical application value and application prospects.
基于电阻膜的多层宽带超材料吸收体设计与分析
本文设计并分析了一种基于电阻膜的多层宽带超材料吸收体。吸收体由三个介电层和两个元材料结构组成。仿真试验结果表明,当本文设计的多层宽带超材料吸收体厚度仅为4.6mm时,在7.26GHz-40GHz频段内吸收率大于90%。通过分析发现,吸收器的电磁波能量主要是通过电阻膜结构损失的,上层电阻膜主要负责高频段的电磁能量损失,下层电阻膜主要负责低频段的电磁能量损失。本文设计的宽带超材料吸波器结构简单,吸收频带宽。具有重要的实际应用价值和应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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