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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Phases of the SAW reflection and transmission coefficients for short reflectors on 128° LiNbO3
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Phases of the SAW reflection and transmission coefficients for short reflectors on 128° LiNbO3

机译:128°LiNbO3上短反射器的SAW反射和透射系数的相位

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摘要

We study numerically the phase of surface acoustic waves reflected by or transmitted through short reflectors comprising only 1-3 aluminium electrodes on 128° YX-cut lithium niobate (LiNbO3). The electrodes have a finite thickness, and they are either open-circuited or grounded. The center-to-center distance between adjacent electrodes d corresponds roughly either to half of the characteristic wavelength d∝Λ0/2 or to d∝Λ0, for the reflectors operating at the fundamental and second harmonic modes, respectively. We use software based on the finite-element and boundary-element methods (FEM/BEM) for numerical experiments with a tailored test structure having 3 interdigital transducers (IDTs), simulating experimental conditions with an incident wave and reflected and transmitted surface acoustic wave (SAW). Using artificial enhancement of time resolution in conjunction with the fast Fourier transform (FFT) and time-gating, calculation of the Y-parameters in a relatively wide frequency range allows us to determine the phase of the reflection and transmission coefficients.
机译:我们在数字上研究了在128°YX切割的铌酸锂(LiNbO3)上由仅包含1-3个铝电极的短反射器反射或透射的表面声波的相位。电极的厚度有限,并且已开路或接地。对于分别在基波和二次谐波模式下运行的反射器,相邻电极d之间的中心距大约等于特征波长d∝Λ0 / 2的一半或d∝Λ0。我们使用基于有限元和边界元方法(FEM / BEM)的软件对量身定制的具有3个叉指换能器(IDT)的测试结构进行数值实验,以入射波以及反射和透射的表面声波来模拟实验条件(锯)。通过将时间分辨率的人工增强与快速傅立叶变换(FFT)和时间选通结合使用,可以在相对较宽的频率范围内计算Y参数,从而可以确定反射系数和透射系数的相位。

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