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Composite wave-absorbing structure combining thin plasma and metasurface

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【作者】 郝志安李健飞徐彬姚静锋袁承勋王莹周忠祥王晓鸥

【Author】 Zhian HAO;Jianfei LI;Bin XU;Jingfeng YAO;Chengxun YUAN;Ying WANG;Zhongxiang ZHOU;Xiaoou WANG;School of Physics, Harbin Institute of Technology;National Key Laboratory of Electromagnetic Environment(LEME), China Research Institute of Radio Wave Propagation;Heilongjiang Provincial Key Laboratory of Plasma Physics and Technology;

【通讯作者】 姚静锋;袁承勋;

【机构】 School of Physics, Harbin Institute of TechnologyNational Key Laboratory of Electromagnetic Environment(LEME), China Research Institute of Radio Wave PropagationHeilongjiang Provincial Key Laboratory of Plasma Physics and Technology

【摘要】 In order to solve the thickness dependence of plasma absorption of electromagnetic waves and further reduce the backward radar scattering cross section(RCS) of the target, we designed a novel composite structure of a metasurface and plasma. A metasurface with three absorption peaks is designed by means of an equivalent circuit based on an electromagnetic resonance type metamaterial absorber. The reflection and absorption of the composite structure are numerically and experimentally verified. The finite integration method was used to simulate a composite structure of finite size to obtain the RCS. The experimental measurements of electromagnetic wave reflection were conducted by a vector network analyzer(Keysight N5234A) and horn antennas, etc. The research showed that the absorption capacity of this composite structure was substantially improved compared to either the plasma or the metasurface, and it is more convenient for application due to its low plasma thickness requirement and easy fabrication.

【Abstract】 In order to solve the thickness dependence of plasma absorption of electromagnetic waves and further reduce the backward radar scattering cross section(RCS) of the target, we designed a novel composite structure of a metasurface and plasma. A metasurface with three absorption peaks is designed by means of an equivalent circuit based on an electromagnetic resonance type metamaterial absorber. The reflection and absorption of the composite structure are numerically and experimentally verified. The finite integration method was used to simulate a composite structure of finite size to obtain the RCS. The experimental measurements of electromagnetic wave reflection were conducted by a vector network analyzer(Keysight N5234A) and horn antennas, etc. The research showed that the absorption capacity of this composite structure was substantially improved compared to either the plasma or the metasurface, and it is more convenient for application due to its low plasma thickness requirement and easy fabrication.

【基金】 financially supported by National Natural Science Foundation of China (No. 12175050);the Foundation of National Key Laboratory of Electromagnetic Environment of China (No. 202101003)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2023年04期
  • 【分类号】O53;O441.4
  • 【下载频次】4
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