FEM Modeling of Electro-Acoustic Nonlinearities in Surface Acoustic Wave Devices: A Methodological Review

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2023-08-07 DOI:10.3390/acoustics5030045
A. Mayer, E. Mayer, M. Mayer, W. Ruile, V. Chauhan, Thomas Forster, K. Wagner
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Abstract

In the framework of electro-elasticity theory and the finite element method (FEM), a model is set up for the computation of quantities in surface acoustic wave (SAW) devices accounting for nonlinear effects. These include second-order and third-order intermodulations, second and third harmonic generation and the influence of electro-acoustic nonlinearity on the frequency characteristics of SAW resonators. The model is based on perturbation theory, and requires input material constants, e.g., the elastic moduli up to fourth order for all materials involved. The model is two-dimensional, corresponding to an infinite aperture, but all three Cartesian components of the displacement and electrical fields are accounted for. The first version of the model pertains to an infinite periodic arrangement of electrodes. It is subsequently generalized to systems with a finite number of electrodes. For the latter version, a recursive algorithm is presented which is related to the cascading scheme of Plessky and Koskela and strongly reduces computation time and memory requirements. The model is applied to TC-SAW systems with copper electrodes buried in an oxide film on a LiNbO3 substrate. Results of computations are presented for the electrical current due to third-order intermodulations and the displacement field associated with the second harmonic and second-order intermodulations, generated by monochromatic input tones. The scope of this review is limited to methodological aspects with the goal to enable calculations of nonlinear quantities in SAW devices on inexpensive and easily accessible computing platforms.
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表面声波装置中电声非线性的有限元建模:方法学综述
在电弹性理论和有限元法(FEM)的框架内,建立了一个考虑非线性效应的声表面波(SAW)器件数量计算模型。其中包括二阶和三阶互调、二次和三次谐波产生以及电声非线性对SAW谐振器频率特性的影响。该模型基于微扰理论,需要输入材料常数,例如所有相关材料的四阶弹性模量。该模型是二维的,对应于无限孔径,但位移和电场的所有三个笛卡尔分量都被考虑在内。该模型的第一个版本涉及电极的无限周期排列。它随后被推广到具有有限数量电极的系统。对于后一个版本,提出了一种递归算法,该算法与Plessky和Koskela的级联方案有关,大大减少了计算时间和内存需求。该模型应用于具有埋在LiNbO3衬底上的氧化物膜中的铜电极的TC-SAW系统。给出了由单色输入音调产生的三阶互调引起的电流以及与二阶谐波和二阶互调相关的位移场的计算结果。本综述的范围仅限于方法学方面,目的是在廉价且易于访问的计算平台上计算SAW器件中的非线性量。
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来源期刊
CiteScore
3.70
自引率
0.00%
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0
审稿时长
11 weeks
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