Workie Temesgen Bailie, Zhang Lingqin, Shen Junyao, Jiang Jianli, Yao Wenfeng, Shen Quhuan, Bao Jingfu, Hashimoto Ken-Ya
School of Integrated Circuit Science and Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China.
Tiantong Ruihong Technology Co., Ltd., No. 306, Haining 314499, China.
Micromachines (Basel). 2025 May 31;16(6):663. doi: 10.3390/mi16060663.
This article presents an investigation into the use of nanoscale phononic crystals (PnCs) as reflectors for surface acoustic wave (SAW) resonators, with a focus on pillar-based PnCs. Finite element analysis was employed to simulate the phononic dispersion characteristics and to study the effects of the pillar shape, material and geometric dimensions on achievable acoustic bandgap. To validate our concept, we fabricated SAW resonators and filters incorporating the proposed pillar-based PnC reflectors. The PnC-based reflector shows promising performance, even with smaller number of PnC arrays. In this regard, with a PnC array reflector consisting of 20 lattice periods, the SAW resonator exhibits a maximum bode-Q of about 1600, which can be considered to be a reasonably high value for SAW resonators on bulk 42° Y-X lithium tantalate (42° Y-X LiTaO) substrate. Furthermore, we implemented SAW filters using pillar-based PnC reflectors, resulting in a minimum insertion loss of less than 3 dB and out-of-band attenuation exceeding 35 dB. The authors believe that there is still a long way to go in making it fit for mass production, especially due to issues related with the accuracy of fabrication. But, upon its successful implementation, this approach of using PnCs as SAW reflectors could lead to reducing the foot-print of SAW devices, particularly for SAW-based sensors and filters.
本文介绍了对纳米尺度声子晶体(PnC)作为表面声波(SAW)谐振器反射器的应用研究,重点是基于柱体的PnC。采用有限元分析来模拟声子色散特性,并研究柱体形状、材料和几何尺寸对可实现的声子带隙的影响。为了验证我们的概念,我们制造了包含所提出的基于柱体的PnC反射器的SAW谐振器和滤波器。基于PnC的反射器即使在较少数量的PnC阵列情况下也表现出良好的性能。在这方面,对于由20个晶格周期组成的PnC阵列反射器,SAW谐振器的最大品质因数约为1600,这对于体42°Y-X钽酸锂(42°Y-X LiTaO)衬底上的SAW谐振器来说可被认为是一个相当高的值。此外,我们使用基于柱体的PnC反射器实现了SAW滤波器,其最小插入损耗小于3 dB,带外衰减超过35 dB。作者认为,要使其适合大规模生产还有很长的路要走,特别是由于与制造精度相关的问题。但是,一旦成功实施,这种将PnC用作SAW反射器的方法可能会导致减小SAW器件的占地面积,特别是对于基于SAW的传感器和滤波器。