Design and fabrication of 2D phononic crystals in surface acoustic wave micro devices

被引:0
|
作者
Gu, KB [1 ]
Chang, CL
Shieh, JC
Shih, WP
机构
[1] Natl Taiwan Univ, Dept Bioind Mechatron Engn, Taipei 10764, Taiwan
[2] Canon Inc, NEMS Platform Res Dept, Canon Res Ctr, Tokyo, Japan
[3] Natl Taiwan Univ, Dept Engn Mech, Taipei 10764, Taiwan
关键词
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, We present the design and fabrication of innovative phononic crystals integrated with two sets of interdigital (IDT) electrodes for frequency band selection of surface acoustic waves (SAW). The potential applications of this device include performance improvement of SAW micro-sensors, front-end components in RF circuitries, and directional receptions of high frequency acoustic waves. Analogous to the band-gap generated by photonic crystals, the phononic crystals, two dimensional repetitive structures composed of two different elastic materials, can prohibit the propagation of elastic waves with either specific incident angles or certain bandwidth. In this paper, the prohibited bandwidth has been verified by fabricating the phononic crystals between a micromachined SAW resonator and a receiver. Both the resonator and receiver are composed of IDT electrodes deposited and patterned on a thin piezoelectric layer. To confine the prohibited bandwidth on the order of hundred MHz, the diameter of the circular pores in phononic crystals is designed to be 6 micron and the aspect ratio of each pore is 3:1. To maximize the power transduction from IDT electrodes to SAW, the spacing between two inter-digits is one-fourth the wavelength of SAW. Specifically, the spacing ranges from 3.4 microns to 9.0 microns, depending on the central frequency. Both surface and bulk micromachining are employed and integrated to fabricate the crystals as well as SAW resonator and receiver altogether. Firstly, a 1.5-micron zinc oxide, which provides well-defined central frequency, is sputtered and patterned onto silicon substrate. Second, the IDT electrodes are evaporated and patterned by lift-off technique. Then the exposed silicon substrate is etched using DRIE to generate two dimensional phononic crystals. To tune the prohibited SAW bandwidth, the crystal pores are filled-with copper or nickel by electroless plating. The insertion loss of the fabricated devices is characterized and is found to agree with simulation results.
引用
收藏
页码:686 / 689
页数:4
相关论文
共 50 条
  • [31] Surface/interface effects on dispersion relations of 2D phononic crystals with parallel nanoholes or nanofibers
    Bei Cai
    Peijun Wei
    [J]. Acta Mechanica, 2013, 224 : 2749 - 2758
  • [32] TWO DIMENSIONAL PHONONIC BAND-GAP MATERIALS FOR SURFACE ACOUSTIC WAVE DEVICES
    Pachiu, Cristina
    Moagar-Poladian, Victor
    Comanescu, F.
    Izbicki, Jean-Louis
    [J]. 2011 INTERNATIONAL SEMICONDUCTOR CONFERENCE (CAS 2011), 34TH EDITION, VOLS 1 AND 2, 2011, : 95 - 98
  • [33] Surface/interface effects on dispersion relations of 2D phononic crystals with parallel nanoholes or nanofibers
    Cai, Bei
    Wei, Peijun
    [J]. ACTA MECHANICA, 2013, 224 (11) : 2749 - 2758
  • [34] Evidence of surface acoustic wave band gaps in the phononic crystals created on thin plates
    Zhang, XY
    Jackson, T
    Lafond, E
    Deymier, P
    Vasseur, J
    [J]. APPLIED PHYSICS LETTERS, 2006, 88 (04) : 1 - 3
  • [35] Beam Focusing of Surface Acoustic Wave Using Gradient-Index Phononic Crystals
    Sun, Jia-Hong
    Yu, Yuan-Hai
    [J]. 2016 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2016,
  • [36] Coupled Resonator Acoustic Waveguides-Based Acoustic Interferometers Designed within 2D Phononic Crystals: Experiment and Theory
    Martinez-Esquivel, David
    Mendez-Sanchez, Rafael Alberto
    Heo, Hyeonu
    Martinez-Arguello, Angel Marbel
    Mayorga-Rojas, Miguel
    Neogi, Arup
    Reyes-Contreras, Delfino
    [J]. ADVANCED PHYSICS RESEARCH, 2024, 3 (03):
  • [37] Design of phononic materials/structures for surface wave devices using topology optimization
    Rupp, Cory J.
    Evgrafov, Anton
    Maute, Kurt
    Dunn, Martin L.
    [J]. STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, 2007, 34 (02) : 111 - 121
  • [38] Design of phononic materials/structures for surface wave devices using topology optimization
    Cory J. Rupp
    Anton Evgrafov
    Kurt Maute
    Martin L. Dunn
    [J]. Structural and Multidisciplinary Optimization, 2007, 34 : 111 - 121
  • [39] Acoustic Crystallization of 2D Colloidal Crystals
    Menath, Johannes
    Mohammadi, Reza
    Grauer, Jens Christian
    Deters, Claudius
    Boehm, Maike
    Liebchen, Benno
    Janssen, Liesbeth M. C.
    Loewen, Hartmut
    Vogel, Nicolas
    [J]. ADVANCED MATERIALS, 2023, 35 (02)
  • [40] Acoustic surface-guided modes in phononic crystals
    He, Zhaojian
    Peng, Shasha
    Ke, Manzhu
    Shi, Jing
    Deng, Ke
    Zhao, Heping
    Liu, Zhengyou
    Wen, Weijia
    Sheng, Ping
    [J]. EPL, 2013, 104 (03)