Ultra-wideband Transmissive Water-Based Metamaterial Absorber with Wide Angle Incidence and Polarization Insensitivity

Plasmonics ◽  
2021 ◽  
Author(s):  
Shangru Li ◽  
Zhaoyang Shen ◽  
Helin Yang ◽  
Yujie Liu ◽  
Yuejie Yang ◽  
...  
AIP Advances ◽  
2020 ◽  
Vol 10 (5) ◽  
pp. 055211
Author(s):  
Xiaoqi Zhang ◽  
Fengping Yan ◽  
Xuemei Du ◽  
Wei Wang ◽  
Min Zhang

2020 ◽  
Author(s):  
CaiXing Hu ◽  
XingLiang Tian ◽  
Ziwei Zhou ◽  
Dan Zhang ◽  
Hai-Feng Zhang

2021 ◽  
Vol 8 ◽  
Author(s):  
Liansheng Wang ◽  
Dongyan Xia ◽  
Quanhong Fu ◽  
Xueyong Ding ◽  
Yuan Wang

In this paper, we report a switchable ultra-wideband metamaterial absorber with polarization-insensitivity and wide-incident angle at THz band which is composed of VO2 disk, polyimide dielectric substrate, and gold ground plane. The results show that the absorption is greater than 90% from 3.5–8 THz for a temperature of 300 K and this absorption band disappears when the temperature rises to 350 K. The absorption property of our proposed metamaterial absorber is insensitive to polarization states and angles and it can withhold high absorption of more than 80% for wide-incident angles, up to 60° for TE mode and TM mode. The wideband absorption mechanism is elucidated using an effective medium and surface current analysis.


2019 ◽  
Vol 383 (23) ◽  
pp. 2739-2743 ◽  
Author(s):  
Yanfei Zhou ◽  
Zhaoyang Shen ◽  
Xiaojun Huang ◽  
Jiong Wu ◽  
Yujun Li ◽  
...  

2021 ◽  
Vol 54 (27) ◽  
pp. 275101
Author(s):  
Yufan Zhao ◽  
Shuying Li ◽  
Yuying Jiang ◽  
Changqing Gu ◽  
Liangliang Liu ◽  
...  

2020 ◽  
Vol 126 (3) ◽  
Author(s):  
Yanfei Zhou ◽  
Zhaoyang Shen ◽  
Jiong Wu ◽  
Ye Zhang ◽  
Siqi Huang ◽  
...  

Materials ◽  
2018 ◽  
Vol 11 (10) ◽  
pp. 2045 ◽  
Author(s):  
Xavier Begaud ◽  
Anne Lepage ◽  
Stefan Varault ◽  
Michel Soiron ◽  
André Barka

In order to extend the performance of radar absorbing materials, it is necessary to design new structures with wideband properties and large angles of incidence which are also as thin as possible. The objective of this work, realized within the framework of the SAFAS project (self-complementary surface with low signature) is, then, the development of an ultra-wideband microwave absorber of low thickness. The design of such material requires a multilayered structure composed with dielectric layers, metasurfaces, and wide-angle impedance matching layers. This solution has been realized with on-the-shelf materials, and measured to validate the concept. At normal incidence, the bandwidth ratio, defined for a magnitude of the reflection coefficient below −10 dB, is 4.7:1 for an absorber with a total thickness of 11.5 mm, which corresponds to λ/7 at the lowest operating frequency. For an incidence of 60°, this bandwidth ratio is reduced to 3.8:1, but the device remains ultra-wideband.


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