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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Band gaps and the electromechanical coupling coefficient of a surface acoustic wave in a two-dimensional piezoelectric phononic crystal
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Band gaps and the electromechanical coupling coefficient of a surface acoustic wave in a two-dimensional piezoelectric phononic crystal

机译:二维压电声子晶体中声表面波的带隙和机电耦合系数

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摘要

In this paper we analyze the phononic band structure of bulk and surface waves in a two-dimensional periodic structure consisting of an array of piezoelectric cylinders in an isotropic background material. The explicit formulations of the bulk wave and the surface wave dispersion relations in such a structure are derived based on the plane wave expansion method. The band gaps and the electromechanical coupling coefficients for surface acoustic waves propagating in such a structure are calculated. The influences of material and geometrical anisotropy as well as the filling fraction on the electromechanical coupling coefficients are discussed, and some silent features are drawn. The results of this research may serve as an important reference for studying surface acoustic wave devices consisting of phononic structures.
机译:在本文中,我们分析了二维周期结构中体波和表面波的声带结构,该结构由各向同性背景材料中的压电圆柱体阵列组成。基于平面波扩展方法,推导了这种结构中体波和表面波色散关系的明确公式。计算在这种结构中传播的表面声波的带隙和机电耦合系数。讨论了材料和几何各向异性以及填充率对机电耦合系数的影响,并绘制了一些无声的特征。研究结果可为研究由声子结构组成的声表面波装置提供重要参考。

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