Surface acousticwaves propagation at lossy metasurfaces: Experimental and theoretical characterization of complex dispersion relations

L. Schwan, A. Geslain, J. Groby, V. Romero-García
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Abstract

While metasurfaces properties are known to govern the dispersion relation of Surface Acoustic Wave (SAW) that mimics surface plasmon phenomena, little attention has been paid to the effects of micro-structural dissipation on that dispersion relation. Here we report the experimental and theoretical characterization of both SAW propagation and attenuation in the presence of a lossy metasurface. The latter consists of quarter-wavelength resonators embedded in a rigid board and arranged periodically in a square lattice. Complex SAW wavenumbers are retrieved experimentally using a spatial Laplace Transform, and experimental results are compared with those from an analytical model using Plane Wave Expansions. Both real and imaginary parts of the SAW wavenumber are presented and results bears testament to the hybridisation of the metasurface-induced dispersion relation with periodicity-induced Bragg interferences. The accuracy of homogenization approaches is estimated and the possibility of slow sound applications using such a metasurface is discussed in regard to SAW attenuation.
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表面声波在有耗超表面上的传播:复杂色散关系的实验和理论表征
虽然超表面特性控制着表面声波(SAW)的色散关系,但微观结构耗散对这种色散关系的影响却很少受到关注。在这里,我们报告了在有耗超表面存在下声呐传播和衰减的实验和理论表征。后者由嵌入在刚性板上的四分之一波长谐振器组成,并周期性地排列在方形晶格中。利用空间拉普拉斯变换对复声表面波数进行了实验反演,并将实验结果与平面波展开的解析模型结果进行了比较。给出了声表面波数的实部和虚部,结果证明了超表面诱导色散关系与周期性诱导布拉格干涉的杂化。估计了均匀化方法的准确性,并讨论了使用这种超表面的慢声应用的可能性。
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