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Real-time steering of curved sound beams in a feedback-based topological acoustic metamaterial

机译:基于反馈的拓扑声学超材料中弯曲声梁的实时转向

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摘要

We present the concept of a feedback-based topological acoustic metamaterial as a tool for realizing autonomous and active guiding of sound beams along arbitrary curved paths in free two-dimensional space. The metamaterial building blocks are acoustic transducers, embedded in a slab waveguide. The transducers generate a desired dispersion profile in closed-loop by processing real-time pressure field measurements through preprogrammed controllers. In particular, the metamaterial can be programmed to exhibit analogies of quantum topological wave phenomena, which enables unconventional and exceptionally robust sound beam guiding. As an example, we realize the quantum valley Hall effect by creating, using a collocated pressure feedback, an alternating acoustic impedance pattern across the waveguide. The pattern is traversed by artificial trajectories of different shapes, which are reconfigurable in real-time. Due to topological protection, the sound waves between the plates remain localized on the trajectories, and do not back-scatter by the sharp corners or imperfections in the design. The feedback-based design can be used to realize arbitrary physical interactions in the metamaterial, including non-local, nonlinear, time-dependent, or non-reciprocal couplings, paving the way to unconventional acoustic wave guiding on the same reprogrammable platform. We then present a non-collocated control algorithm, which mimics another quantum effect, rendering the sound beams uni-directional.
机译:我们介绍了基于反馈的拓扑声学超材料的概念,作为实现沿着自由二维空间中任意弯曲路径的声束的自主和主动引导的工具。超材料构建块是声学传感器,嵌入在板坯波导中。通过预编程的控制器处理实时压力场测量,换能器通过预编程的控制器处理实时压力场测量来在闭环中产生所需的分散曲线。特别地,可以编程超材料以表现出量子拓扑波现象的类比,这使得能够具有非常规和异常稳健的声束引导。作为示例,我们通过使用搭配的压力反馈,在波导上产生交替声阻抗图案来实现量子谷霍尔效应。该图案被不同形状的人工轨迹穿过,其实时可重新配置。由于拓扑保护,板之间的声波仍然在轨迹上局部化,并且不会通过设计中的尖角或缺陷背部散射。基于反馈的设计可用于实现超材料中的任意物理相互作用,包括非局部,非线性,时间依赖性或非互易耦合,以引导在同一可重编程平台上的非传统声波的方式铺平道路。然后,我们提出了一种非分配控制算法,其模拟了另一个量子效应,使声光线无定向。

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  • 来源
    《Mechanical systems and signal processing》 |2021年第5期|107479.1-107479.14|共14页
  • 作者单位

    Raymond and Beverly Sackler School of Physics and Astronomy. Tel-Aviv University Tel-Aviv 69978 Israel School of Mechanical Engineering Tel Aviv University Tel-Aviv 69978 Israel;

    Raymond and Beverly Sackler School of Physics and Astronomy. Tel-Aviv University Tel-Aviv 69978 Israel;

    Raymond and Beverly Sackler School of Physics and Astronomy. Tel-Aviv University Tel-Aviv 69978 Israel The Center for Physics and Chemistry of Living Systems Tel Aviv University Tel Aviv 69978 Israel;

    Raymond and Beverly Sackler School of Physics and Astronomy. Tel-Aviv University Tel-Aviv 69978 Israel;

    School of Mechanical Engineering Tel Aviv University Tel-Aviv 69978 Israel Sackler Center for Computational Molecular and Materials Science Tel Aviv University Tel-Aviv 69978 Israel Kavli Institute for Theoretical Physics University of California Santa Barbara CA 93106 USA The Center for Physics and Chemistry of Living Systems Tel Aviv University Tel Aviv 69978 Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Active control of sound waves; Two-dimensional waveguides; Acoustic metamaterials; Reprogrammable metamaterials; Topological wave phenomena; Quantum valley Hall effect;

    机译:主动控制声波;二维波导;声学超材料;可重算的超材料;拓扑波现象;Quantum Valley Hall效果;
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