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首页> 外文期刊>Japanese journal of applied physics >3.5 GHz longitudinal leaky surface acoustic wave resonator using a multilayered waveguide structure for high acoustic energy confinement
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3.5 GHz longitudinal leaky surface acoustic wave resonator using a multilayered waveguide structure for high acoustic energy confinement

机译:使用多层波导结构的3.5 GHz纵向泄漏表面声波谐振器,用于高声能限制

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摘要

In this paper, the use of a structure comprising a thin LiNbO3 plate and a multilayered acoustic mirror composed of SiO2 and Pt for high-performance longitudinal leaky surface acoustic wave (LLSAW) device is proposed. The mirror is expected to offer a much higher reflectivity than that composed of SiO2 and AlN, which the authors proposed previously. The field distribution of these structures is calculated by using a finite element method. It is shown that the acoustic wave energy of the proposed structure is well confined in the vicinity of the top surface, and that leakage to the substrate is reduced. A one-port resonator is fabricated on the structure and its performance characteristics are evaluated. Owing to a high phase velocity of 6,035 m/s, which is about 1.5 times higher than that of conventional SAWs, a large impedance ratio of 71 dB was achieved at 3.5 GHz in addition to a large fractional bandwidth of 9.5%. (C) 2018 The Japan Society of Applied Physics
机译:在本文中,提出了一种由LiNbO3薄板和SiO2和Pt组成的多层声镜的结构用于高性能纵向泄漏声表面波(LLSAW)装置的建议。作者期望该镜比由SiO2和AlN组成的镜具有更高的反射率。这些结构的场分布是使用有限元方法计算的。结果表明,所提出的结构的声波能量被很好地限制在顶表面附近,并且减少了对基板的泄漏。在该结构上制造一个单端口谐振器,并评估其性能特性。由于具有6,035 m / s的高相速度,这是传统SAW的高约1.5倍,因此在3.5 GHz处实现了71 dB的大阻抗比,此外还有9.5%的大比例带宽。 (C)2018日本应用物理学会

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