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Modeling and Analysis of Lateral Propagation of Surface Acoustic Waves Including Coupling Between Different Waves

机译:包含不同波之间耦合的表面声波横向传播的建模与分析

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This paper discusses lateral propagation of surface acoustic waves (SAWs) in periodic grating structures when two types of SAWs exist simultaneously and are coupled. The thin plate model proposed by the authors is extended to include the coupling between two different SAW modes. First, lateral SAW propagation in an infinitely long periodic grating is modeled and discussed. Then, the model is applied to the Al-grating/42° YX-LiTaO (42-LT) substrate structure, and it is shown that the slowness curve shape changes from concave to convex with the Al grating thickness. The transverse responses are also analyzed on an infinitely long interdigital transducer on the structure, and good agreement is achieved between the present and the finite-element method analyses. Finally, SAW resonators are fabricated on the Cu grating/42-LT substrate structure, and it is experimentally verified that the slowness curve shape of the shear horizontal SAW changes with the Cu thickness.
机译:当两种类型的声表面波同时存在并耦合时,本文讨论了表面声波在周期性光栅结构中的横向传播。作者提出的薄板模型被扩展为包括两种不同SAW模式之间的耦合。首先,对无限长周期光栅中的横向SAW传播进行建模和讨论。然后,将该模型应用于Al光栅/ 42°YX-LiTaO(42-LT)衬底结构,结果表明,随着Al光栅厚度的增加,慢度曲线的形状从凹形变为凸形。在结构上的无限长叉指式换能器上还分析了横向响应,并且本分析与有限元方法分析之间取得了良好的一致性。最后,在铜光栅/ 42-LT基板结构上制作了声表面波谐振器,并通过实验验证了剪切水平声表面波的慢度曲线形状随铜厚度的变化而变化。

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