Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking
Acoustic metasurfaces can reshape a reflected wavefront rather arbitrarily, despite being much thinner than the wavelength, thus allowing on-demand wavefront modulation in a variety of applications. Recent passive metasurfaces, however, have suffered from bandwidth limitations, thus restricting thei...
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doaj-fd626ab1d4294a0e9790398fee96cf242021-01-20T04:10:50ZengElsevierMaterials & Design0264-12752021-02-01199109414Ultra-broadband passive acoustic metasurface for wide-angle carpet cloakingHong-Tao Zhou0Wen-Xiao Fu1Yan-Feng Wang2Yue-Sheng Wang3Vincent Laude4Chuanzeng Zhang5School of Mechanical Engineering, Tianjin University, Tianjin 300350, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300350, ChinaSchool of Mechanical Engineering, Tianjin University, Tianjin 300350, China; Corresponding authors.School of Mechanical Engineering, Tianjin University, Tianjin 300350, China; Corresponding authors.Institut FEMTO-ST, CNRS UMR 6174, Université Bourgogne Franche-Comté, Besançon 25030, France; Corresponding authors.Department of Civil Engineering, University of Siegen, Siegen D-57068, GermanyAcoustic metasurfaces can reshape a reflected wavefront rather arbitrarily, despite being much thinner than the wavelength, thus allowing on-demand wavefront modulation in a variety of applications. Recent passive metasurfaces, however, have suffered from bandwidth limitations, thus restricting their range of operation. In this work, we propose the systematic design of ultra-broadband passive metasurfaces by combining the broadband local reflection rule with an optimization method. The validation of the technique is demonstrated by fabrication and measurement of an ultra-broadband carpet cloak. Numerical and experimental results show that the relative bandwidth of the optimized carpet cloak, thinner than one fifth of the maximum wavelength, can exceed 93.33%, a value that is much larger than that of previous passive metasurfaces. Furthermore, multi-frequency pulse incidence tests reveal the excellent time-domain broadband characteristics of the metasurface over a wide range of angles of incidence. The proposed strategy opens a new route for the design of advanced passive metasurfaces for ultra-broadband wave manipulation and thus promotes practical applications of broadband acoustical devices.http://www.sciencedirect.com/science/article/pii/S0264127520309503Acoustic metasurfacesCarpet cloakingUltra-broad bandwidthWide angleInverse optimization design |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hong-Tao Zhou Wen-Xiao Fu Yan-Feng Wang Yue-Sheng Wang Vincent Laude Chuanzeng Zhang |
spellingShingle |
Hong-Tao Zhou Wen-Xiao Fu Yan-Feng Wang Yue-Sheng Wang Vincent Laude Chuanzeng Zhang Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking Materials & Design Acoustic metasurfaces Carpet cloaking Ultra-broad bandwidth Wide angle Inverse optimization design |
author_facet |
Hong-Tao Zhou Wen-Xiao Fu Yan-Feng Wang Yue-Sheng Wang Vincent Laude Chuanzeng Zhang |
author_sort |
Hong-Tao Zhou |
title |
Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
title_short |
Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
title_full |
Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
title_fullStr |
Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
title_full_unstemmed |
Ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
title_sort |
ultra-broadband passive acoustic metasurface for wide-angle carpet cloaking |
publisher |
Elsevier |
series |
Materials & Design |
issn |
0264-1275 |
publishDate |
2021-02-01 |
description |
Acoustic metasurfaces can reshape a reflected wavefront rather arbitrarily, despite being much thinner than the wavelength, thus allowing on-demand wavefront modulation in a variety of applications. Recent passive metasurfaces, however, have suffered from bandwidth limitations, thus restricting their range of operation. In this work, we propose the systematic design of ultra-broadband passive metasurfaces by combining the broadband local reflection rule with an optimization method. The validation of the technique is demonstrated by fabrication and measurement of an ultra-broadband carpet cloak. Numerical and experimental results show that the relative bandwidth of the optimized carpet cloak, thinner than one fifth of the maximum wavelength, can exceed 93.33%, a value that is much larger than that of previous passive metasurfaces. Furthermore, multi-frequency pulse incidence tests reveal the excellent time-domain broadband characteristics of the metasurface over a wide range of angles of incidence. The proposed strategy opens a new route for the design of advanced passive metasurfaces for ultra-broadband wave manipulation and thus promotes practical applications of broadband acoustical devices. |
topic |
Acoustic metasurfaces Carpet cloaking Ultra-broad bandwidth Wide angle Inverse optimization design |
url |
http://www.sciencedirect.com/science/article/pii/S0264127520309503 |
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