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Conical Refraction of Elastic Waves by Anisotropic Metamaterials and Application for Parallel Translation of Elastic Waves

机译:各向异性超材料对弹性波的圆锥折射及其在弹性波平行平移中的应用

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摘要

Conical refraction, which is quite well-known in electromagnetic waves, has not been explored well in elastic waves due to the lack of proper natural elastic media. Here, we propose and design a unique anisotropic elastic metamaterial slab that realizes conical refraction for horizontally incident longitudinal or transverse waves; the single-mode wave is split into two oblique coupled longitudinal-shear waves. As an interesting application, we carried out an experiment of parallel translation of an incident elastic wave system through the anisotropic metamaterial slab. The parallel translation can be useful for ultrasonic non-destructive testing of a system hidden by obstacles. While the parallel translation resembles light refraction through a parallel plate without angle deviation between entry and exit beams, this wave behavior cannot be achieved without the engineered metamaterial because an elastic wave incident upon a dissimilar medium is always split at different refraction angles into two different modes, longitudinal and shear.
机译:由于缺乏适当的天然弹性介质,在电磁波中众所周知的圆锥折射尚未在弹性波中得到很好的研究。在这里,我们提出并设计了一种独特的各向异性弹性超材料平板,该平板可以实现水平入射的纵向或横向波的圆锥形折射。单模波分为两个斜耦合的纵向剪切波。作为一个有趣的应用,我们通过各向异性超材料平板对入射弹性波系统进行平行平移的实验。平行平移对于被障碍物掩盖的系统的超声无损检测很有用。虽然平行平移类似于通过平行板的光折射,但入射光束和出射光束之间没有角度偏差,但是如果没有经过工程改造的超材料,就无法实现这种波行为,因为入射到异种介质上的弹性波总是以不同的折射角分成两种不同的模式,纵向和剪切力。

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