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一种用于X和Ku频段共形应用的具有宽入射角稳定性的超薄三频段超材料吸波器。

An Ultrathin, Triple-Band Metamaterial Absorber with Wide-Incident-Angle Stability for Conformal Applications at X and Ku Frequency Band.

作者信息

Deng Guangsheng, Lv Kun, Sun Hanxiao, Yang Jun, Yin Zhiping, Li Ying, Chi Baihong, Li Xiangxiang

机构信息

Special Display and Imaging Technology Innovation Center of Anhui Province, Academy of Opto-Electronic Technology, Hefei University of Technology, Hefei, 230009, China.

Process and Mechanical Engineering Technology Laboratory, Space Star Technology Co. Ltd., Beijing, 100095, China.

出版信息

Nanoscale Res Lett. 2020 Nov 18;15(1):217. doi: 10.1186/s11671-020-03448-0.

Abstract

An ultrathin and flexible metamaterial absorber (MA) with triple absorption peaks is presented in this paper. The proposed absorber has been designed in such a way that three absorption peaks are located at 8.5, 13.5, and 17 GHz (X and Ku bands) with absorption of 99.9%, 99.5%, and 99.9%, respectively. The proposed structure is only 0.4 mm thick, which is approximately 1/88, 1/55, and 1/44 for the respective free space wavelengths of absorption frequency in various bands. The MA is also insensitive due to its symmetric geometry. In addition, the proposed structure exhibits minimum 86% absorption (TE incidence) within 60° angle of incidence. For TM incidence, the proposed absorber exhibits more than 99% absorptivity up to 60° incidence. Surface current and electric field distributions were investigated to analyze the mechanism governing absorption. Parameter analyses were performed for absorption optimization. Moreover, the performance of the MA was experimentally demonstrated in free space on a sample under test with 20 × 30 unit cells fabricated on a flexible dielectric. Under normal incidence, the fabricated MA exhibits near perfect absorption at each absorption peak for all polarization angles, and the experimental results were found to be consistent with simulation results. Due to its advantages of high-efficiency absorption over a broad range of incidence angles, the proposed absorber can be used in energy harvesting and electromagnetic shielding.

摘要

本文提出了一种具有三重吸收峰的超薄柔性超材料吸波器(MA)。所提出的吸波器设计方式使得三个吸收峰分别位于8.5、13.5和17GHz(X波段和Ku波段),吸收率分别为99.9%、99.5%和99.9%。所提出的结构厚度仅为0.4mm,对于各频段吸收频率的自由空间波长而言,分别约为1/88、1/55和1/44。该MA因其对称几何结构而不敏感。此外,所提出的结构在60°入射角范围内表现出最小86%的吸收率(TE入射)。对于TM入射,所提出的吸波器在高达60°入射角时表现出超过99%的吸收率。研究了表面电流和电场分布以分析吸收的控制机制。进行了参数分析以优化吸收。此外,在自由空间中对在柔性电介质上制作的具有20×30个单元的测试样品上的MA性能进行了实验验证。在垂直入射下,制作的MA在所有极化角度的每个吸收峰处都表现出近乎完美的吸收,并且实验结果与模拟结果一致。由于其在宽入射角范围内具有高效吸收的优点,所提出的吸波器可用于能量收集和电磁屏蔽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d8/7674547/382dc23b3469/11671_2020_3448_Fig1_HTML.jpg

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