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Broadband and broad-angle asymmetric acoustic transmission by unbalanced excitation of surface evanescent waves based on single-layer metasurface

机译:基于单层元曲面的表面渐逝波的不平衡激励宽带和宽角度不对称声学传输

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摘要

Currently, complicated structure, incident-angle selectivity, and narrow frequency band are the key drawbacks of the asymmetric acoustic transmission (AAT) devices. Here we tackle these problems by proposing a class of single-layer lossy acoustic metasurfaces. The broadband AAT performance is realized in a broad range of incident angles. When the incident angle is in the range between two critical values, which are derived in this paper, an external sound wave can be converted into an evanescent mode, and the total internal reflection occurs for backward sound. The incident sound wave can be negatively refracted for forward sound if the evanescent mode conversion condition is broken, representing the realization of the AAT. However, the AAT phenomenon cannot be observed outside of the range defined above. The proposed design of highly efficient broad-angle AAT can find applications in sound sensing and noise control. (C) 2020 Elsevier B.V. All rights reserved.
机译:目前,复杂的结构,入射角选择性和窄频带是非对称声学传输(AAT)设备的关键缺点。 在这里,我们通过提出一类单层损坏的声学元件来解决这些问题。 宽带AAT性能在广泛的入射角中实现。 当入射角在本文中导出的两个临界值之间的范围内时,外部声波可以转换成渐变模式,并且落后声音发生全内反射。 如果渐逝模式转换条件破坏,则入射声波可以对前向声音进行负折射,代表AAT的实现。 然而,在上面定义的范围之外不能观察到AAT现象。 所提出的高效广角AAT设计可以在声音传感和噪声控制中找到应用。 (c)2020 Elsevier B.v.保留所有权利。

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