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Finite-element analysis of scattering parameters of surface acoustic wave bandpass filter formed on barium titanate thin film

机译:钛酸钡薄膜形成表面声波带通滤波器散射参数的有限元分析

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摘要

The frequency dependence of scattering parameters of interdigital surface acoustic wave transducers placed on ferroelectric barium titanate (BaTiO3) epitaxial film in c-phase coated over magnesium oxide has been studied using the finite-element method (FEM) approach along with the perfectly matched layer (PML) technique. The interdigital transducer which has a comb-like structure with aluminum electrodes excites the mechanical wave. The distance between the fingers allows tuning the frequency properties of the wave propagation. The magnesium oxide is taken as the substrate. The two-dimensional model of two-port surface acoustic wave filter is created to calculate scattering parameters and to show how to design the fixture in COMSOLTM. Some practical computational challenges of finite element modeling of SAW devices in COMSOLTM are shown. The effect of lattice misfit strain on acoustic properties of heterostructures of BaTiO3 epitaxial film in c-phase at room temperature is discussed in present article for two low-frequency surface acoustic resonances.
机译:使用有限元法(FEM)方法以及完美匹配的层,研究了在涂覆在氧化镁的C相的铁电钡钛酸钡(BATIO3)外延薄膜上的散射参数的频率依赖性已经研究了完美匹配的层( PML)技术。具有铝电极的梳状结构的叉状结构激励机械波。手指之间的距离允许调谐波传播的频率特性。将氧化镁作为基质。创建双端口表面声波滤波器的二维模型以计算散射参数,并展示如何在Comsoltm中设计夹具。显示了在COMSOLTM中锯器件有限元建模的一些实际计算挑战。本文讨论了两种低频表面声谐振的本文中讨论了在室温下C相的BATIO3外延膜异质结构声学特性的影响。

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