Acoustic metamaterials of sonic crystals

Yan-feng Chen, Ming-Hui Lu, Liang Feng, Yong‐yuan Zhu, Shi-ning Zhu, N. Ming
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引用次数: 0

Abstract

Acoustic wave exhibits inherently different characters when propagating in sonic band-gap materials. We address negative refractions of acoustic wave both experimentally and theoretically in two dimensional sonic crystals constructed with steel rods embedded in air. With lattice symmetry and artificial ldquoatomsrdquo designing, refraction of acoustic wave in the crystals could be manipulated from positive to negative and from defocusing to focusing with sonic crystal plates. Analogous to enhanced transmission of optical wave, enhanced acoustic wave transmission through narrow slit smaller than wavelength has been established as well, which is modeled as the coupling of surface waves and cavity mode in the slits. These abnormal behaviors show that sonic crystal is emerging as a kind of acoustic metamaterials.
声学晶体的声学超材料
声波在声波带隙材料中传播时表现出固有的不同特性。我们从实验和理论两个方面研究了用嵌入空气中的钢棒构建的二维声波晶体中声波的负折射。通过晶格对称和人工低原子设计,声波在晶体中的折射可以由正折射到负折射,由散焦到聚焦。与光波的增强传输类似,声波在小于波长的狭缝中的增强传输也被建立起来,其模型为狭缝中表面波与腔模的耦合。这些异常行为表明声晶体作为一种声学超材料正在兴起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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