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Simulation of characteristics of a SiO2/c-axis-oriented LiNbO3/diamond surface acoustic wave

机译:SiO2 / c轴取向的LiNbO3 /金刚石表面声波特性的仿真

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摘要

High-frequency surface acoustic wave (SAW) devices based on diamond that have been realized to date utilize c-axis-oriented ZnO as the piezoelectric thin film. This material, with SiO2 overlay, shows excellent characteristics of a high phase velocity of over 10,000 m/s and a zero temperature coefficient, and it has been successfully applied to high-frequency SAW filters and resonators. To expand on materials used on diamond, the theoretical calculation has been carried out for LiNbO3/diamond, and a high electromechanical coupling coefficient up to 9.0% is expected. In this work, the characteristics of SiO2/LiNbO3/diamond were studied by computer simulation, emphasizing a zero temperature coefficient with a high coupling coefficient. Calculations are carried out for the phase velocity, the electromechanical coupling coefficient, and the temperature coefficient of the Rayleigh wave and its higher mode Sezawa wave. As a result, SiO2/IDT/LiNbO3/diamond is found to offer a zero temperature coefficient with a very high coupling coefficient up to 10.1% in conjunction with a high phase velocity of 12,100 m/s.
机译:迄今为止已经实现的基于金刚石的高频表面声波(SAW)装置利用c轴取向的ZnO作为压电薄膜。这种材料具有SiO2覆盖层,具有超过10,000 m / s的高相速度和零温度系数的优异特性,并且已成功应用于高频SAW滤波器和谐振器。为了扩展金刚石上使用的材料,已经对LiNbO3 /金刚石进行了理论计算,并期望达到9.0%的高机电耦合系数。在这项工作中,通过计算机模拟研究了SiO2 / LiNbO3 /金刚石的特性,强调了零温度系数和高耦合系数。对瑞利波及其更高模式的Sezawa波的相速度,机电耦合系数和温度系数进行了计算。结果,发现SiO2 / IDT / LiNbO3 /金刚石具有零温度系数,具有高达10.1%的非常高的耦合系数,以及12,100 m / s的高相速度。

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