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可调谐光响应弹性超材料

Tunable photo-responsive elastic metamaterials.

作者信息

Gliozzi Antonio S, Miniaci Marco, Chiappone Annalisa, Bergamini Andrea, Morin Benjamin, Descrovi Emiliano

机构信息

Department of Applied Science and Technology, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129, Torino, Italy.

CNRS, Univ. Lille, Ecole Centrale, ISEN, Univ. Valenciennes, IEMN - UMR 8520, 59046, Lille cedex, France.

出版信息

Nat Commun. 2020 May 22;11(1):2576. doi: 10.1038/s41467-020-16272-y.

Abstract

The metamaterial paradigm has allowed an unprecedented space-time control of various physical fields, including elastic and acoustic waves. Despite the wide variety of metamaterial configurations proposed so far, most of the existing solutions display a frequency response that cannot be tuned, once the structures are fabricated. Few exceptions include systems controlled by electric or magnetic fields, temperature, radio waves and mechanical stimuli, which may often be unpractical for real-world implementations. To overcome this limitation, we introduce here a polymeric 3D-printed elastic metamaterial whose transmission spectrum can be deterministically tuned by a light field. We demonstrate the reversible doubling of the width of an existing frequency band gap upon selective laser illumination. This feature is exploited to provide an elastic-switch functionality with a one-minute lag time, over one hundred cycles. In perspective, light-responsive components can bring substantial improvements to active devices for elastic wave control, such as beam-splitters, switches and filters.

摘要

超材料范式实现了对包括弹性波和声波在内的各种物理场前所未有的时空控制。尽管迄今为止已提出了各种各样的超材料结构,但大多数现有解决方案一旦制造完成,其频率响应就无法调整。少数例外情况包括由电场或磁场、温度、无线电波和机械刺激控制的系统,这些系统在实际应用中往往不实用。为了克服这一限制,我们在此引入一种聚合物3D打印弹性超材料,其传输光谱可由光场确定性地调谐。我们展示了在选择性激光照射下,现有频带隙宽度的可逆加倍。利用这一特性,可在一百多个周期内提供具有一分钟延迟时间的弹性开关功能。从长远来看,光响应组件可为弹性波控制的有源器件(如分束器、开关和滤波器)带来实质性改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6e3/7244508/9e5d9a32b5cb/41467_2020_16272_Fig1_HTML.jpg

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