Modeling of multilayered acoustic wave devices with the method of reverberation-ray matrix

Yong-qiang Guo, Wei-qiu Chen
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引用次数: 3

Abstract

The method of reverberation-ray matrix (MRRM) are modified and extended to the analysis of wave propagation in multilayered acoustic wave devices based on three-dimensional linear piezoelectricity. By the plane wave solution assumption, state equations are established whose solutions are expressed with unknown wave amplitudes. Within the framework of MRRM, the phase and scattering relations are properly set up to determine the unknowns without involving exponentially growing functions and matrix inversion operations in an easy and uniform way. Thus the present MRRM is unconditionally stable and free from limitations to the frequency, the thickness of individual layers and the total number of layers. The surface waves, the interface waves and the bulk waves are all included in the formulation. Therefore, the present formulation applies to SAW devices as well as BAW devices. Numerical examples are given to illustrate the well performance of the proposed formulation of MRRM for the analysis of free waves in multilayered acoustic wave devices.
用混响射线矩阵法对多层声波装置进行建模
对混响射线矩阵法进行了改进,并将其推广到基于三维线性压电的多层声波器件中的波传播分析中。根据平面波解假设,建立了状态方程,其解以未知波幅表示。在MRRM的框架内,适当地建立相位和散射关系,以确定未知数,而不涉及指数增长函数和矩阵反演操作,简单而均匀。因此,目前的MRRM是无条件稳定的,不受频率、层厚度和层总数的限制。面波、界面波和体波都包含在公式中。因此,本公式既适用于SAW器件,也适用于BAW器件。数值算例说明了所提出的MRRM公式在多层声波器件中自由波分析中的良好性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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