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Wide-Angle Ultra-Broadband Metamaterial Absorber with Polarization-Insensitive Characteristics

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【作者】 陈鹏孔祥林韩建飞王伟华韩奎马洪宇赵雷沈晓鹏

【Author】 Peng Chen;Xianglin Kong;Jianfei Han;Weihua Wang;Kui Han;Hongyu Ma;Lei Zhao;Xiaopeng Shen;National and Local Joint Engineering Laboratory of Internet Application Technology on Mine,China University of Mining and Technology;School of Information and Control Engineering, China University of Mining and Technology;School of Materials Science and Physics, China University of Mining and Technology;

【通讯作者】 赵雷;沈晓鹏;

【机构】 National and Local Joint Engineering Laboratory of Internet Application Technology on Mine,China University of Mining and TechnologySchool of Information and Control Engineering, China University of Mining and TechnologySchool of Materials Science and Physics, China University of Mining and Technology

【摘要】 An ultra-wideband metamaterial absorber is developed,which is polarized-insensitive and angular-stable.Three layers of square resistive films comprise the proposed metamaterial.The optimal values of geometric parameters are obtained,such that the designed absorber can achieve an ultra-broadband absorption response from 4.73 to 39.04 GHz(relative bandwidth of 156.7%) for both transverse electricity and transverse magnetic waves.Moreover,impedance matching theory and an equivalent circuit model are utilized for the absorption mechanism analysis.The compatibility of equivalent circuit calculation results,together with both full-wave simulation and experimental results,demonstrates the excellent performance and applicability of the proposed metamaterial absorber.

【Abstract】 An ultra-wideband metamaterial absorber is developed,which is polarized-insensitive and angular-stable.Three layers of square resistive films comprise the proposed metamaterial.The optimal values of geometric parameters are obtained,such that the designed absorber can achieve an ultra-broadband absorption response from 4.73 to 39.04 GHz(relative bandwidth of 156.7%) for both transverse electricity and transverse magnetic waves.Moreover,impedance matching theory and an equivalent circuit model are utilized for the absorption mechanism analysis.The compatibility of equivalent circuit calculation results,together with both full-wave simulation and experimental results,demonstrates the excellent performance and applicability of the proposed metamaterial absorber.

【基金】 Supported by the Six Talent Peaks Project in Jiangsu Province (Grant No.XYDXX-072);the National Natural Science Foundation of China (Grant Nos.61372048 and 61771226);the Natural Science Foundation of Jiangsu Province (Grant No.BK20161186)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2021年02期
  • 【分类号】TB34;O441.4
  • 【被引频次】6
  • 【下载频次】42
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