Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure

In this study, we propose a wide incident angle- and polarisation-insensitive metamaterial absorber covered with structures comprising a metallic flower shape layer, a dielectric layer and a metallic ground plane. The influences of the structural parameters on the absorptivity are investigated numer...

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Main Authors: Nguyen Thi Quynh Hoa, Phan Duy Tung, Nguyen Duc Dung, Hugo Nguyen, Tran Sy Tuan
Format: Article
Language:English
Published: AIP Publishing LLC 2019-06-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5098005
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spelling doaj-5f6b52f2854b45bb9e82b2d10297d0192020-11-25T00:16:20ZengAIP Publishing LLCAIP Advances2158-32262019-06-0196065318065318-910.1063/1.5098005065906ADVNumerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structureNguyen Thi Quynh Hoa0Phan Duy Tung1Nguyen Duc Dung2Hugo Nguyen3Tran Sy Tuan4School of Engineering and Technology, Vinh University, 182 Le Duan, Vinh City 460000, VietnamSchool of Engineering and Technology, Vinh University, 182 Le Duan, Vinh City 460000, VietnamSchool of Engineering and Technology, Vinh University, 182 Le Duan, Vinh City 460000, VietnamDepartment of Engineering Sciences, Uppsala University, Uppsala 75121, SwedenSchool of Engineering and Technology, Vinh University, 182 Le Duan, Vinh City 460000, VietnamIn this study, we propose a wide incident angle- and polarisation-insensitive metamaterial absorber covered with structures comprising a metallic flower shape layer, a dielectric layer and a metallic ground plane. The influences of the structural parameters on the absorptivity are investigated numerically. The proposed absorber exhibits polarisation insensitivity as the number of symmetric petals of a flower shape reaches as high as 4, 6 and 8. Particularly, the absorber based on 8 petals shows an absorptivity of above 90% for wide incident angles up to 70° under transverse electric and transverse magnetic polarisations. The physical mechanism of these observations is clarified by investigating the electric, power loss density and induced current distributions, which is also supported by the retrieved constitutive electromagnetic parameters. That is, the absorption phenomenon is considerably affected by magnetic resonance. By modifying the petals into hollow shapes, the absorber becomes effective in confining the magnetic resonance and can thus minimise the resonant frequency variation to 0.22% without affecting the absorption performance. In comparison with other reported metamaterial absorbers, our design shows considerable practical feasibility in terms of resonant frequency stability, wide incident angle and polarisation insensitivity, thereby making it suitable for various applications in microwave frequency region.http://dx.doi.org/10.1063/1.5098005
collection DOAJ
language English
format Article
sources DOAJ
author Nguyen Thi Quynh Hoa
Phan Duy Tung
Nguyen Duc Dung
Hugo Nguyen
Tran Sy Tuan
spellingShingle Nguyen Thi Quynh Hoa
Phan Duy Tung
Nguyen Duc Dung
Hugo Nguyen
Tran Sy Tuan
Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
AIP Advances
author_facet Nguyen Thi Quynh Hoa
Phan Duy Tung
Nguyen Duc Dung
Hugo Nguyen
Tran Sy Tuan
author_sort Nguyen Thi Quynh Hoa
title Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
title_short Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
title_full Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
title_fullStr Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
title_full_unstemmed Numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
title_sort numerical study of a wide incident angle- and polarisation-insensitive microwave metamaterial absorber based on a symmetric flower structure
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2019-06-01
description In this study, we propose a wide incident angle- and polarisation-insensitive metamaterial absorber covered with structures comprising a metallic flower shape layer, a dielectric layer and a metallic ground plane. The influences of the structural parameters on the absorptivity are investigated numerically. The proposed absorber exhibits polarisation insensitivity as the number of symmetric petals of a flower shape reaches as high as 4, 6 and 8. Particularly, the absorber based on 8 petals shows an absorptivity of above 90% for wide incident angles up to 70° under transverse electric and transverse magnetic polarisations. The physical mechanism of these observations is clarified by investigating the electric, power loss density and induced current distributions, which is also supported by the retrieved constitutive electromagnetic parameters. That is, the absorption phenomenon is considerably affected by magnetic resonance. By modifying the petals into hollow shapes, the absorber becomes effective in confining the magnetic resonance and can thus minimise the resonant frequency variation to 0.22% without affecting the absorption performance. In comparison with other reported metamaterial absorbers, our design shows considerable practical feasibility in terms of resonant frequency stability, wide incident angle and polarisation insensitivity, thereby making it suitable for various applications in microwave frequency region.
url http://dx.doi.org/10.1063/1.5098005
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