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Propagation of Surface Acoustic Waves in two-dimensional periodic structures

机译:二维周期结构中表面声波的传播

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Propagation of Surface Acoustic Waves (SAW) in two mutually perpendicular directions on the substrate of YZ-cut of LiNbO3 with two-dimensional periodic surface corrugations has been investigated. To calculate the distribution of wave amplitudes as well as SAW transmission and reflection coefficients a new method based on 2D-transfer matrices was developed. Frequency dependencies of transmission and reflection coefficients for Rayleigh SAW propagating in a rectangular region occupied by the two-dimensional periodic structure with three levels of height were measured. The coupling coefficient for waves propagating along Z and X crystallographic axes was determined using the measured and calculated results. It has been shown that if the width of incident acoustic beam is quite narrower than the width of periodic structure, then a kind of channelization takes place for the incident wave, and a resonant enhancement of transmission coefficient arises near the center frequency of Bragg stop band.
机译:研究了表面声波(SAW)在具有二维周期性表面波纹的LiNbO3的YZ切割的衬底上在两个相互垂直的方向上的传播。为了计算波幅的分布以及声表面波的透射和反射系数,提出了一种基于二维传递矩阵的新方法。测量了瑞利声表面波在具有三个高度的二维周期性结构所占据的矩形区域中传播的透射系数和反射系数的频率依赖性。使用测量和计算的结果确定沿Z和X结晶轴传播的波的耦合系数。研究表明,如果入射声束的宽度比周期性结构的宽度窄,则入射波会发生一种信道化,并且在布拉格阻带的中心频率附近会发生传输系数的共振增强。 。

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