Surface acoustic wave properties of aluminum oxide films on lithium niobate

被引:5
|
作者
Shih, Wen-Ching [1 ]
Wang, Tzyy-Long [1 ]
Hsu, Li-Lun [1 ]
机构
[1] Tatung Univ, Grad Inst Electroopt Engn, Taipei 104, Taiwan
关键词
Aluminum oxide film; Electron beam evaporation; Lithium niobate; Surface acoustic wave; AL2O3; THIN-FILMS; CARBON-FILMS; DIELECTRIC-PROPERTIES; ELASTIC PROPERTIES; DIAMOND; CRYSTALLINE; MICROSTRUCTURE; DEPOSITION;
D O I
10.1016/j.tsf.2010.07.029
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Aluminum oxide (Al2O3) films have been deposited on lithium niobate (LiNbO3) substrates by electron beam evaporation without any interlayer between them to ensure a good adhesion of the Al2O3 films to LiNbO3 substrates. As Al2O3 thin films can sufficiently increase the surface acoustic wave (SAW) velocity, they can be used to improve the performance of the SAW device. The SAW phase velocity in the Al2O3LiNbO3 structure was found to increase with the insertion of an Al2O3 film, which can be attributed to the stiffening effect of the Al2O3 layer. The velocity change ratio of SAW was about 4.39% (at 304 MHz) for the Al2O3 (9.7 pin)/LiNbO3 sample. A comparison with other findings in literature reveals that this result is better than what is available from diamond-like carbon/SiC buffer layer/LiNbO3 structure, whose the velocity change ratio is 2%. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:7143 / 7146
页数:4
相关论文
共 50 条
  • [41] Epitaxially grown aluminum film on rotated Y-cut lithium niobate for high-power surface acoustic wave devices
    Sakurai, Atsushi
    Nakanishi, Hidefumi
    Yoshino, Yukio
    Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes & Review Papers, 1995, 34 (5 B): : 2674 - 2677
  • [42] Surface acoustic wave properties of freestanding diamond films
    Flannery, CM
    Whitfield, MD
    Jackman, RB
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2004, 51 (03) : 368 - 371
  • [43] Lithium niobate phononic crystal for surface acoustic waves
    Benchabane, S.
    Khelif, A.
    Rauch, J. Y.
    Robert, L.
    Laude, V.
    PHOTONIC CRYSTAL MATERIALS AND DEVICES IV, 2006, 6128
  • [44] THE ACOUSTIC SURFACE VOLUMETRIC WAVES IN LITHIUM-NIOBATE
    ZHAROV, AM
    KOVALEV, AV
    YAKOVKIN, IB
    ZHURNAL TEKHNICHESKOI FIZIKI, 1982, 52 (01): : 90 - 92
  • [45] Super High Frequency Lithium Niobate Surface Acoustic Wave Transducers up to 14 GHz
    Mohammad, Ali Mohammad
    Chen, Xiao
    Xie, Qian-Yi
    Liu, Bo
    Conway, James
    Tian, He
    Yang, Yi
    Ren, Tian-Ling
    2015 IEEE INTERNATIONAL ELECTRON DEVICES MEETING (IEDM), 2015,
  • [46] Fast leaky surface acoustic waves on lithium niobate and lithium tantalate
    Grigorievski, VI
    2000 IEEE ULTRASONICS SYMPOSIUM PROCEEDINGS, VOLS 1 AND 2, 2000, : 259 - 262
  • [47] Physical properties of metal-doped zinc oxide films for surface acoustic wave application
    Sang-Hun Nam
    Sang-Jin Cho
    Jin-Hyo Boo
    Nanoscale Research Letters, 7
  • [48] SURFACE ACOUSTIC-WAVE CHARACTERISTICS OF A SINGLE-CRYSTAL OF POTASSIUM LITHIUM-NIOBATE
    TAKEUCHI, H
    YAMASHITA, K
    APPLIED PHYSICS LETTERS, 1980, 37 (11) : 996 - 997
  • [49] Self-assembled monolayer compatible with metal surface acoustic wave devices on lithium niobate
    Nihonyanagi, Satoshi
    Eftekhari-Bafrooei, Ali
    Hines, Jacqueline
    Borguet, Eric
    LANGMUIR, 2008, 24 (09) : 5161 - 5165
  • [50] Physical properties of metal-doped zinc oxide films for surface acoustic wave application
    Nam, Sang-Hun
    Cho, Sang-Jin
    Boo, Jin-Hyo
    NANOSCALE RESEARCH LETTERS, 2012, 7