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通过色散定制实现的消色差超表面用于超宽带声束工程。

Achromatic metasurfaces by dispersion customization for ultra-broadband acoustic beam engineering.

作者信息

Dong Hao-Wen, Shen Chen, Zhao Sheng-Dong, Qiu Weibao, Zheng Hairong, Zhang Chuanzeng, Cummer Steven A, Wang Yue-Sheng, Fang Daining, Cheng Li

机构信息

Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, China.

Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong, China.

出版信息

Natl Sci Rev. 2022 Feb 24;9(12):nwac030. doi: 10.1093/nsr/nwac030. eCollection 2022 Dec.

Abstract

Metasurfaces, the ultra-thin media with extraordinary wavefront modulation ability, have shown great promise for many potential applications. However, most of the existing metasurfaces are limited by narrow-band and strong dispersive modulation, which complicates their real-world applications and, therefore require strict customized dispersion. To address this issue, we report a general methodology for generating ultra-broadband achromatic metasurfaces with prescribed ultra-broadband achromatic properties in a bottom-up inverse-design paradigm. We demonstrate three ultra-broadband functionalities, including acoustic beam deflection, focusing and levitation, with relative bandwidths of 93.3%, 120% and 118.9%, respectively. In addition, we reveal a relationship between broadband achromatic functionality and element dispersion. All metasurface elements have anisotropic and asymmetric geometries with multiple scatterers and local cavities that synthetically support internal resonances, bi-anisotropy and multiple scattering for ultra-broadband customized dispersion. Our study opens new horizons for ultra-broadband highly efficient achromatic functional devices, with promising extension to optical and elastic metamaterials.

摘要

超表面是具有非凡波前调制能力的超薄介质,在许多潜在应用中显示出巨大潜力。然而,现有的大多数超表面受到窄带和强色散调制的限制,这使其实际应用变得复杂,因此需要严格的定制色散。为了解决这个问题,我们报告了一种通用方法,用于在自下而上的逆向设计范式中生成具有规定超宽带消色差特性的超宽带消色差超表面。我们展示了三种超宽带功能,包括声束偏转、聚焦和悬浮,相对带宽分别为93.3%、120%和118.9%。此外,我们揭示了宽带消色差功能与元件色散之间的关系。所有超表面元件都具有各向异性和不对称的几何形状,带有多个散射体和局部腔,这些综合支持内部共振、双各向异性和用于超宽带定制色散的多次散射。我们的研究为超宽带高效消色差功能器件开辟了新的视野,有望扩展到光学和弹性超材料领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a12/9883680/42c54e7b9247/nwac030fig1.jpg

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