Liu Fengming, Liu Zhengyou
School of Science, Hubei University of Technology, Wuhan 430068, China.
Hubei Collaborative Innovation Center for High-efficiency Utilization of Solar Energy, Hubei University of Technology, Wuhan 430068, China.
Phys Rev Lett. 2015 Oct 23;115(17):175502. doi: 10.1103/PhysRevLett.115.175502.
We theoretically investigate elastic waves propagating in metamaterials with simultaneous zero indices for both the longitudinal and transverse waves. With scattering objects (here cylinders) present in the metamaterial slabs, while the elastic waves can mostly transmit through the metamaterial slabs perfectly, exhibiting the well-known cloaking effect of zero-index metamaterials, they nevertheless become totally blocked at resonances, indicating strong elastic wave scattering by the objects in the cases. However, despite the occurrence of the elastic wave scattering, there is, counterintuitively, no mode conversion between the longitudinal and transverse waves in the process, completely in contrast to that in conventional elastic media. A design of a two-dimensional phononic crystal with these peculiar properties is presented.
我们从理论上研究了弹性波在纵波和横波同时具有零折射率的超材料中的传播情况。在超材料平板中存在散射体(这里是圆柱体)时,虽然弹性波大多能完美地透过超材料平板,展现出零折射率超材料众所周知的隐身效应,但在共振时它们却会被完全阻挡,这表明在这些情况下物体对弹性波有强烈的散射。然而,尽管发生了弹性波散射,但与传统弹性介质中的情况完全相反,在此过程中纵波和横波之间不存在模式转换。本文提出了一种具有这些特殊性质的二维声子晶体的设计方案。