SH Acoustic Waves in a Lithium Niobate Plate and the Effect of Electrical Boundary Conditions on Their Properties

被引:0
|
作者
S. G. Joshi
B. D. Zaĭtsev
I. E. Kuznetsova
机构
[1] Marquette University,Institute of Radio Engineering and Electronics
[2] Russian Academy of Sciences,undefined
[3] Saratov Branch,undefined
关键词
Plate Thickness; Surface Acoustic Wave; Acoustical Physic; Lithium Niobate; Electromechanical Coupling;
D O I
10.1007/BF03353580
中图分类号
学科分类号
摘要
It is theoretically and experimentally confirmed that the electromechanical coupling coefficient of SH waves propagating in a Y-cut lithium niobate plate along the X direction can exceed 30% when the plate thickness satisfies the condition h/λ= 0.02–0.15. This value of the coupling coefficient is approximately six to seven times greater than the maximal value obtained for SAW in the same material. Such a high value of K2 offers a possibility to control the wave velocity by varying the electrical boundary conditions, e.g., by moving a conducting screen toward the plate surface. The effect of such a screen on the properties of the SH waves is studied both theoretically and experimentally. On the whole, the results of the study show that the use of SH waves offers considerable improvements in the parameters of the known SAW devices and also opens up the possibilities for the development of new devices and sensors that have to operate in contact with a liquid medium.
引用
收藏
页码:282 / 285
页数:3
相关论文
共 50 条
  • [21] Superhigh electromechanical coupling for acoustic plate waves in potassium niobate
    Zatisev, BD
    Kuznetsova, IE
    Joshi, SG
    Borodina, IA
    1999 IEEE ULTRASONICS SYMPOSIUM PROCEEDINGS, VOLS 1 AND 2, 1999, : 291 - 294
  • [22] The effect of an external uniform electric field on Rayleigh surface acoustic waves in lithium niobate
    Zajtsev, B.D.
    Kuznetsova, I.E.
    Akusticheskii Zurnal, 43 (01): : 116 - 118
  • [23] The Effect of an External Uniform Electric Field on Rayleigh Surface Acoustic Waves in Lithium Niobate
    Zaitsev, B. D.
    Kuznetsova, I. E.
    Acoustical Physics, 43 (01):
  • [24] Detection of acoustic solitary waves in nonlinear lithium niobate crystals
    Stevenson, AC
    Mehta, H
    Sethi, RS
    Lowe, CR
    APPLIED PHYSICS LETTERS, 2003, 82 (16) : 2733 - 2735
  • [25] Effect of boundary conditions on the band-gap properties of flexural waves in a periodic compound plate
    Guo, Zhiwei
    Sheng, Meiping
    Pan, Jie
    JOURNAL OF SOUND AND VIBRATION, 2017, 395 : 102 - 126
  • [26] ACOUSTIC SURFACE WAVES WITH INTERNAL SCATTERING IN LITHIUM NIOBATE.
    ZHAROV, A.M.
    KOVALEV, A.V.
    YAKOVKIN, I.B.
    1982, V 27 (N 1): : 56 - 57
  • [27] Thermal Modulation of Gigahertz Surface Acoustic Waves on Lithium Niobate
    Shao, Linbo
    Ding, Sophie W.
    Ma, Yunwei
    Zhang, Yuhao
    Sinclair, Neil
    Loncar, Marko
    PHYSICAL REVIEW APPLIED, 2022, 18 (05)
  • [28] Surface acoustic waves in acoustic superlattice lithium niobate coated with a waveguide layer
    Yang, G. Y.
    Du, J. K.
    Huang, B.
    Jin, Y. A.
    Xu, M. H.
    AIP ADVANCES, 2017, 7 (04):
  • [29] External electric field effect on the properties of Bleustein-Gulyaev surface acoustic waves in lithium niobate and strontium titanate
    Kuznetsova, IE
    Zaitsev, BD
    Polyakov, PV
    Mysenko, MB
    ULTRASONICS, 1998, 36 (1-5) : 431 - 434
  • [30] Lithium Niobate Phononic Crystals for Radio Frequency SH0 Waves
    Lu, Ruochen
    Manzaneque, Tomas
    Yang, Yansong
    Gong, Songbin
    2017 JOINT CONFERENCE OF THE EUROPEAN FREQUENCY AND TIME FORUM AND IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM (EFTF/IFC), 2017, : 846 - 849