泄漏SAW沿液体/LiNbO/sub - 3/蓝宝石结构传播特性及其在液体传感器中的应用

S. Furukawa, K. Mizusaki, W. Shintani, T. Nomura
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引用次数: 0

摘要

提出了一种用于高频液体传感器的液体/LiNbO/sub - 3/蓝宝石结构,并基于第一性原理方程,通过数值计算研究了泄漏表面声波沿层状结构传播的特性。发现在欧拉角(0,0,30+60n度)(n:整数)处机电耦合常数最大,而在其他传播方向上,泄漏SAW的剪切水平分量随液体粘度的耦合而变大。甘油/LiNbO/sub 3//(0.0.1)蓝宝石的最大机电耦合常数约为1.3%,水/LiNbO/sub 3/ (10 /spl mu/m)/(0.0.1)蓝宝石(30 MHz)的最大漏声速度为5390 m/s。这些结果表明,这种层状结构可用于高频液体传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics of leaky SAW propagating along liquid/LiNbO/sub 3//sapphire structure and its application to liquid sensor
Liquid/LiNbO/sub 3//sapphire structure is proposed for high frequency liquid sensors, and the characteristics of leaky surface acoustic wave (leaky SAW) propagating along the layered-structure are examined by the numerical calculation based on the first-principle-equations. It is found that electromechanical coupling constant becomes maximum at Eulerian angles of (0,0,30+60n degree) (n: integer), whereas, shear horizontal component of the leaky SAW, which is coupled with the viscosity of the liquid, becomes large at other propagation directions. The maximum electromechanical coupling constant for glycerin/LiNbO/sub 3//(00.1) sapphire is about 1.3%, and the maximum leaky SAW velocity for water/LiNbO/sub 3/ (10 /spl mu/m)/(00.1) sapphire (30 MHz) is 5390 m/s. These results indicate that this layered-structure is useful for high frequency liquid sensors.
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