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用于高频谐振器的LiTaO/石英层状衬底中的高速无衰减声波。

High-velocity non-attenuated acoustic waves in LiTaO/quartz layered substrates for high frequency resonators.

作者信息

Naumenko Natalya F

机构信息

Acousto-Optical Research Center, National University of Science and Technology "MISIS", Moscow 119049, Russia.

出版信息

Ultrasonics. 2019 May;95:1-5. doi: 10.1016/j.ultras.2019.03.001. Epub 2019 Mar 2.

DOI:10.1016/j.ultras.2019.03.001
PMID:30851695
Abstract

Multilayered substrates for Surface Acoustic Wave (SAW) devices are able to combine SAW characteristics that cannot coexist in a single crystal substrate and, thus, meet the strong requirements of the new class of SAW devices developed for the next generations of communication systems. Recently, high performance resonators arranged on LiTaO/quartz bonded wafers and utilizing shear horizontally polarized acoustic waves were reported. Leaky SAWs with quasi-longitudinal polarization propagate faster and can facilitate fabrication of high frequency SAW devices but generally leak strongly into the substrate. This paper describes how the LiTaO/quartz structure can be optimized to allow longitudinal SAWs to propagate without attenuation. Due to the symmetry consideration, which is supplemented by a rigorous numerical simulation of the admittance functions of SAW resonators and an accurate extraction of the propagation losses, the found optimal LiTaO and quartz orientations with the optimized LiTaO thickness ensure the propagation of acoustic waves with a velocity exceeding 5400 m/s and an electromechanical coupling of 6.8% in resonators with Q factors up to 10,000. The optimal LT/quartz structures with plate thicknesses varying between 0.32 and 0.68 wavelengths can be employed in SAW resonators operating at high frequencies, up to 5 GHz. The existence of numerous orientations in quartz supporting the propagation of non-attenuated longitudinal SAWs is explained based on the concept of exceptional bulk waves, which is a part of SAW theory.

摘要

用于表面声波(SAW)器件的多层基板能够结合在单晶基板中无法共存的SAW特性,从而满足为下一代通信系统开发的新型SAW器件的严格要求。最近,有报道称在LiTaO/石英键合晶圆上布置并利用水平剪切极化声波的高性能谐振器。具有准纵向极化的泄漏SAW传播速度更快,有助于高频SAW器件的制造,但通常会强烈泄漏到基板中。本文描述了如何优化LiTaO/石英结构,以使纵向SAW无衰减地传播。由于对称性考虑,并辅以SAW谐振器导纳函数的严格数值模拟和传播损耗的精确提取,所发现的具有优化LiTaO厚度的最佳LiTaO和石英取向确保了声波在高达10,000的品质因数的谐振器中以超过5400 m/s的速度传播以及6.8%的机电耦合。板厚在0.32至0.68波长之间变化的最佳LT/石英结构可用于高达5 GHz的高频SAW谐振器。基于特殊体波的概念解释了石英中存在大量支持无衰减纵向SAW传播的取向,这是SAW理论的一部分。

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