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使用混合单元胞的带宽增强型宽入射角超材料吸波器

Bandwidth-enhanced and Wide-angle-of-incidence Metamaterial Absorber using a Hybrid Unit Cell.

作者信息

Nguyen Toan Trung, Lim Sungjoon

机构信息

School of Electrical and Electronics Engineering, Chung-Ang University, Heukseok-Dong, Dongjak-Gu, 156-756, Republic of Korea.

出版信息

Sci Rep. 2017 Nov 1;7(1):14814. doi: 10.1038/s41598-017-14792-0.

Abstract

In this paper, a bandwidth-enhanced and wide-angle-of-incidence metamaterial absorber is proposed using a hybrid unit cell. Owing to symmetric unit cells, high absorptivity is maintained for all polarization angles. A circular-sector unit cell enables high absorptivity under the oblique incidence of both transverse electric (TE) and transverse magnetic (TM) modes. To enhance the bandwidth, we introduced a hybrid unit cell comprising four circular sectors. Two sectors resonate at 10.38 GHz, and two resonate at 10.55 GHz. Since the two absorption frequencies are near each other, the bandwidth increases. The proposed idea is demonstrated with both full-wave simulations and measurements. The simulated absorptivity exceeds 91% around 10.45 GHz at an angle of incidence up to 70° in both TM and TE polarizations. The measured absorptivity at 10.45 GHz is close to 96.5% for all polarization angles under normal incidence. As the angle of incidence changes from 0° to 70°, the measured absorptivity at 10.45 GHz remains above 90% in the TE mode and higher than 94% in the TM mode. Under an oblique incidence, the measured 90% absorption bandwidth is 1.95% from 10.1-10.2 GHz and 10.4-10.5 GHz up to 70° at the TE mode, and 3.39% from 10.15-10.5 GHz up to 70° at the TM mode.

摘要

本文提出了一种采用混合单元结构的带宽增强型宽入射角超材料吸波器。由于单元结构具有对称性,在所有极化角度下均能保持高吸收率。圆形扇形单元结构能够在横向电场(TE)和横向磁场(TM)模式的斜入射下实现高吸收率。为了拓宽带宽,我们引入了一种由四个圆形扇形组成的混合单元结构。其中两个扇形在10.38 GHz处发生谐振,另外两个在10.55 GHz处发生谐振。由于这两个吸收频率彼此接近,带宽得以增加。通过全波模拟和测量验证了所提出的方案。在TM和TE极化下,入射角高达70°时,在10.45 GHz附近模拟吸收率超过91%。在垂直入射时,对于所有极化角度,10.45 GHz处的测量吸收率接近96.5%。随着入射角从0°变为70°,在TE模式下,10.45 GHz处的测量吸收率保持在90%以上,在TM模式下高于94%。在斜入射情况下,在TE模式下,测量得到的90%吸收带宽在10.1 - 10.2 GHz和10.4 - 10.5 GHz范围内,入射角高达70°时为1.95%;在TM模式下,在10.15 - 10.5 GHz范围内,入射角高达70°时为3.39%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f11c/5665957/e0a253a09b47/41598_2017_14792_Fig1_HTML.jpg

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