Rupin Matthieu, Roux Philippe, Lerosey Geoffroy, Lemoult Fabrice
Institut Langevin, ESPCI ParisTech and CNRS UMR 7587, PSL Research University, 1 rue Jussieu, 75005, Paris, France.
Institut des Sciences de la Terre, UMR 5275, Université Joseph Fourier, Grenoble, 38000, France.
Sci Rep. 2015 Sep 3;5:13714. doi: 10.1038/srep13714.
Locally resonant metamaterials derive their effective properties from hybridization between their resonant unit cells and the incoming wave. This phenomenon is well understood in the case of plane waves that propagate in media where the unit cell respects the symmetry of the incident field. However, in many systems, several modes with orthogonal symmetries can coexist at a given frequency, while the resonant unit cells themselves can have asymmetric scattering cross-sections. In this paper we are interested in the influence of symmetry breaking on the hybridization of a wave field that includes multiple propagative modes. The A0 and S0 Lamb waves that propagate in a thin plate are good candidates for this study, as they are either anti-symmetric or symmetric. First we designed an experimental setup with an asymmetric metamaterial made of long rods glued to one side of a metallic plate. We show that the flexural resonances of the rods induce a break of the orthogonality between the A0/S0 modes of the free-plate. Finally, based on numerical simulations we show that the orthogonality is preserved in the case of a symmetric metamaterial leading to the presence of two independent polariton curves in the dispersion relation.
局域共振超材料的有效特性源自其共振单元与入射波之间的杂化。在平面波在单元符合入射场对称性的介质中传播的情况下,这种现象已得到充分理解。然而,在许多系统中,具有正交对称性的几种模式可以在给定频率下共存,而共振单元本身可能具有不对称散射截面。在本文中,我们关注对称性破缺对包含多个传播模式的波场杂化的影响。在薄板中传播的A0和S0兰姆波是该研究的理想候选对象,因为它们分别是反对称或对称的。首先,我们设计了一个实验装置,其中包含由粘贴在金属板一侧的长杆制成的不对称超材料。我们表明,杆的弯曲共振导致自由板的A0/S0模式之间的正交性被打破。最后,基于数值模拟,我们表明在对称超材料的情况下正交性得以保留,这导致色散关系中存在两条独立的极化激元曲线。