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宽带各向异性超表面声屏障。

Broadband sound barriers with bianisotropic metasurfaces.

机构信息

Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Nat Commun. 2018 Dec 13;9(1):5299. doi: 10.1038/s41467-018-07809-3.

Abstract

Noise is a long standing societal problem that has recently been linked to serious health consequences. Despite decades of research on noise mitigation techniques, existing methods have significant limitations including inability to silence broadband noise and shield large volumes. Here we show theoretically and experimentally that acoustic bianisotropic materials with non-zero strain to momentum coupling are remarkably effective sound barriers. They surpass state-of-the-art sound isolators in terms of attenuation, bandwidth, and shielded volume. We implement our barriers with very compact active meta-atoms that owe their small size to their local response to external sound. Moreover, our active approach is not constrained by feedback stabilization requirements, in stark contrast with all traditional active sound control systems. Consequently, bianisotropic sound barriers have the potential to revolutionize noise control technologies and provide much needed solutions to an increasingly important and difficult challenge.

摘要

噪声是一个长期存在的社会问题,最近与严重的健康后果联系在一起。尽管几十年来一直在研究噪声缓解技术,但现有的方法存在显著的局限性,包括无法消除宽带噪声和屏蔽大体积。在这里,我们从理论和实验上表明,具有非零应变到动量耦合的各向异性声材料是非常有效的声屏障。它们在衰减、带宽和屏蔽体积方面超过了最先进的隔音器。我们用非常紧凑的有源超材料来实现我们的屏障,它们的小尺寸归因于它们对外界声音的局部响应。此外,我们的主动方法不受反馈稳定要求的限制,这与所有传统的主动声控制系统形成鲜明对比。因此,各向异性声屏障有可能彻底改变噪声控制技术,并为这一日益重要和困难的挑战提供急需的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b06f/6294143/bb3d8e1c9223/41467_2018_7809_Fig1_HTML.jpg

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