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中国物理学会期刊

ZnO/Diamond/Si结构中声表面波传播特性分析

CSTR: 32037.14.aps.62.104601

Simulation of characteristics of ZnO/diamond/Si structure surface acoustic wave

CSTR: 32037.14.aps.62.104601
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  • 基于递归刚度矩阵方法, 建立了多层结构声表面波表面有效介电常数模型, 计算出了ZnO/Si结构声表面波的相速度频散特性, 与实验结果符合较好, 表明本文所建模型的准确性和有效性. 进一步计算得到了三层结构(ZnO/Diamond/Si)声表面波的相速度和机电耦合系数的频散规律, 获得此结构最优的高波速和高机电耦合系数组合及达到最优组合所需控制的变量, 为高频高性能声表面波器件设计和优化提供了有益参考.

     

    Based on the recursive stiffness matrix method, the effective surface permittitivity model of multilayered surface acoustic wave structure is established. By this model, the frequency dispersive characteristic of phase velocity for the ZnO/Si layered structure is calculated. The calculation results are in agreement with the experimental results, which verifies the effectiveness and accuracy of the model. Furthermore, the model is also established for the determination of the phase velocity and electromechanical coupling coefficients of ZnO/Diamond/Si structure. The best combination of high velocity and high coupling coefficient of the structure is obtained, which provides a good reference for the design of a high-performance and high-capability surface acoustic wave device.

     

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