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利用纵向漏波对用于高频宽带声表面波器件的铌酸锂/石英衬底进行优化。

Optimization of LiNbO/Quartz Substrate for High-Frequency Wideband SAW Devices Using Longitudinal Leaky Waves.

作者信息

Naumenko Natalya F

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Jul;67(7):1485-1491. doi: 10.1109/TUFFC.2020.2969298. Epub 2020 Jan 24.

DOI:10.1109/TUFFC.2020.2969298
PMID:31995482
Abstract

Multilayered structures can successfully replace single crystal substrates in high-performance surface acoustic wave (SAW) devices. A combination of high propagation velocity and strong piezoelectric coupling is required for acoustic modes used in wideband high-frequency SAW devices. These characteristics can be achieved simultaneously in SAW devices arranged on a lithium niobate (LN) thin plate bonded to quartz and using longitudinal leaky SAW (LLSAW) if the orientations of both the crystals and the plate thickness are optimized. This article describes an optimization procedure developed to find low-attenuated LLSAWs in layered structures that can be used in LN/quartz applications. The symmetry consideration of two crystals was followed by the optimization of the LN orientation to achieve the largest electromechanical coupling and by an analysis of quartz anisotropy as a crucial factor of the existence of nonattenuated LLSAWs. Finally, the quartz orientation and LN thickness were optimized by a rigorous numerical simulation of resonator admittances and by the extraction of LLSAW attenuation at resonant and antiresonant frequencies. The discovered structures enable the propagation of LLSAWs with velocities in the range of 5400-6000 m/s, electromechanical coupling up to 18%, and negligible attenuation. High Q -factors can be achieved at resonance and antiresonance by the variation of the duty factor in the same layered structure. The specific behavior of the LLSAW attenuation with a variation of the LN thickness and quartz cut angle is illustrated by contour plots for each of the optimal structures discovered.

摘要

多层结构能够成功替代高性能表面声波(SAW)器件中的单晶衬底。宽带高频SAW器件所使用的声学模式需要具备高传播速度和强压电耦合的特性。如果晶体的取向和板厚都经过优化,那么在粘结到石英上的铌酸锂(LN)薄板上布置的SAW器件中,利用纵向漏表面声波(LLSAW)就可以同时实现这些特性。本文描述了一种优化程序,该程序用于在可用于LN/石英应用的层状结构中找到低衰减的LLSAW。在考虑两种晶体对称性之后,优化LN取向以实现最大的机电耦合,并分析石英各向异性,将其作为无衰减LLSAW存在的关键因素。最后,通过对谐振器导纳进行严格的数值模拟以及提取谐振和反谐振频率下的LLSAW衰减,对石英取向和LN厚度进行了优化。所发现的结构能够使LLSAW以5400 - 6000 m/s的速度传播,机电耦合高达18%,且衰减可忽略不计。通过在同一层状结构中改变占空比,在谐振和反谐振时可实现高Q因子。针对所发现的每个优化结构,通过等高线图展示了LLSAW衰减随LN厚度和石英切割角变化的具体情况。

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