铌酸锂压电基板剪切水平表面声波COMSOL模拟

U. Hashim, W. Liu, K. L. Foo, C. Voon, H. Hisham, T. Nazwa, S. T. Ten, A. Sudin, M. S. Nur Humaira
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引用次数: 2

摘要

剪切水平表面声波(Shear horizontal surface acoustic wave, SHSAW)是一种最适合于基于液体的表面声波,它具有声波能量不辐射到液体中的优点。因此,SHSAW器件有潜力为病原体传感研究提供高性能的传感平台。自1960年以来,SAW器件的发展出现了许多复杂的理论模型,如δ函数模型、等效电路模型、模式耦合(COM)模型、p -矩阵模型和计算机仿真技术工作室套件(CST)、有限元分析(FEA)模型。不幸的是,这些模型已经发展到更多的电信应用,如信号滤波器和谐振器。然而,本研究中的SHSAW设备开发不是用于信号滤波器或谐振器,而是通过质量加载效应检测用于表面传感目的,因此使用COMSOL Multiphysics对SHSAW进行建模,用于病原体传感开发。本文模拟了15 μm、20 μm和25 μm宽度电极的三种谐振频率,初步评价了COMSOL Multiphysics在SHSAW研究中的适用性。对比表明,理论计算与仿真结果的差异小于10%。
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Shear horizontal surface acoustic wave COMSOL modeling on lithium niobate piezoelectric substrate
Shear horizontal surface acoustic wave (SHSAW), one type of the Surface Acoustic Wave is most suitable for the liquid based application as SHSAW has the advantage of acoustic energy is not being radiated into liquid. Hence, SHSAW device has the potential to provide high-performance sensing platform in pathogen sensing research. Since 1960, there have been a lot of complicated theoretical models for the SAW devices development, such as from delta function model, equivalent circuit model, coupling-of-modes (COM) model, P-matrix model and Computer Simulation Technology Studio Suite (CST), finite element analysis (FEA) model. Unfortunately, these models have been developed more toward telecommunication application such as signal filters and resonators. However, SHSAW device development in this research is not meant for signal filter or resonators but used for surface sensing purpose through mass loading effects detection, therefore COMSOL Multiphysics was used to modeling the SHSAW for pathogen sensing development. Three resonant frequencies of 15 μm, 20 μm and 25 μm width electrodes were simulated in this paper as preliminary evaluation of the applicable of COMSOL Multiphysics in SHSAW research. The comparison has shown that the difference between theoretical calculation and simulation result is less than 10%.
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