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Theoretical Study of Monolayer and Double-Layer Waveguide Love Wave Sensors for Achieving High Sensitivity

机译:实现高灵敏度的单层和双层波导爱波传感器的理论研究

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摘要

Love wave sensors have been widely used for sensing applications. In this work, we introduce the theoretical analysis of the monolayer and double-layer waveguide Love wave sensors. The velocity, particle displacement and energy distribution of Love waves were analyzed. Using the variations of the energy repartition, the sensitivity coefficients of Love wave sensors were calculated. To achieve a higher sensitivity coefficient, a thin gold layer was added as the second waveguide on top of the silicon dioxide (SiO 2 ) waveguide–based, 36 degree–rotated, Y-cut, X-propagating lithium tantalate (36° YX LiTaO 3 ) Love wave sensor. The Love wave velocity was significantly reduced by the added gold layer, and the flow of wave energy into the waveguide layer from the substrate was enhanced. By using the double-layer structure, almost a 72-fold enhancement in the sensitivity coefficient was achieved compared to the monolayer structure. Additionally, the thickness of the SiO 2 layer was also reduced with the application of the gold layer, resulting in easier device fabrication. This study allows for the possibility of designing and realizing robust Love wave sensors with high sensitivity and a low limit of detection.
机译:爱波传感器已被广泛用于传感应用。在这项工作中,我们介绍了单层和双层波导Love波传感器的理论分析。分析了Love波的速度,粒子位移和能量分布。利用能量分配的变化,可以计算出Love波传感器的灵敏度系数。为了获得更高的灵敏度系数,在基于二氧化硅(SiO 2)的基于波导的36度旋转,Y形切割,X传播的钽酸锂(36°YX LiTaO 3)爱波传感器。添加的金层显着降低了Love波速,并且波能从基板进入波导层的流动增强了。通过使用双层结构,与单层结构相比,灵敏度系数几乎提高了72倍。另外,随着金层的应用,SiO 2层的厚度也减小了,从而使得器件制造更容易。这项研究允许设计和实现具有高灵敏度和低检测限的坚固的Love波传感器。

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