高级检索

液体激光聚焦击穿声辐射特性研究

宗思光, 王江安, 蒋兴舟, 王雨虹

宗思光, 王江安, 蒋兴舟, 王雨虹. 液体激光聚焦击穿声辐射特性研究[J]. 激光技术, 2009, 33(3): 269-272.
引用本文: 宗思光, 王江安, 蒋兴舟, 王雨虹. 液体激光聚焦击穿声辐射特性研究[J]. 激光技术, 2009, 33(3): 269-272.
ZONG Si-guang, WANG Jiang-an, JIANG Xing-zhou, WANG Yu-hong. Characteristics of laser-induced acoustic wave at different laser focusing position[J]. LASER TECHNOLOGY, 2009, 33(3): 269-272.
Citation: ZONG Si-guang, WANG Jiang-an, JIANG Xing-zhou, WANG Yu-hong. Characteristics of laser-induced acoustic wave at different laser focusing position[J]. LASER TECHNOLOGY, 2009, 33(3): 269-272.

液体激光聚焦击穿声辐射特性研究

基金项目: 

国防武器装备重点基金资助项目(9140A14060207JB11)

详细信息
    作者简介:

    宗思光(1979- ),男,博士研究生,现主要从事水下激光探测、光声学的研究.

    通讯作者:

    蒋兴舟,E-mail:gdyfzx@163.com

  • 中图分类号: TN249

Characteristics of laser-induced acoustic wave at different laser focusing position

  • 摘要: 激光与水介质相互作用时,在不同激光聚焦位置情况下,光击穿辐射声信号具有较大的差异性。为研究激光聚焦位置对辐射声波的影响,构建了激光声测量系统,实验研究了激光聚焦位置对光击穿辐射声信号的影响。结果表明,激光声信号脉冲宽度主要与激光脉冲宽度相关,与激光聚焦位置无关;激光聚焦位置影响声信号的时域波形及信号强度;应避免激光在空气中聚焦击穿。该研究结果有助于激光声研究的深入开展。
    Abstract: Because of the interaction between the laser and water,the laser-induced signal is much different at different focusing position.In order to study the effect of focusing position on the acoustic wave,a setup was built to test the laser-induced acoustic wave.Experimental results show that the pulse width of the acoustic wave is related to that of laser pulse,and isindependent of laser focusing position.The focusing position only affects the time-domain profile and intensity of the acoustic wave.Furthermore,laser-induced plasma in air should be avoided.The results are helpful for further study on laser-induced acoustic wave.
  • [1]

    LI R F,CUI G H,TIAN Z X.Laser-acoustic remote sensing technique[M].Beijing:National Defence Industry Press,2003:3-11(in Chinese).

    [2]

    ZOU B.Acoustic measurement of parameters of laser induced plasma on the target[J].Laser Technology,2000,24(6):366-369(in Chinese).

    [3]

    BERTHELOT Y.Laser generation of sound by nonlinear thermal expansion[M].Austin:Texas University,1994:87-90.

    [4]

    OSTROVSKAYA G V.Efficiency of optical-to-acoustic energy conversion upon the interaction of a pulsed laser radiation with a liquid[J].Technical Physics,2002,47(10):1299-1300.

    [5]

    HE D M.High-power Nd:YAG-generated underwater sound sourcefor air-submarine communication[J].SPIE,1999,3613:83-93.

    [6]

    BLACKMON F,ANTONELLI L.Remote,aerial,opto-acoustic communication and sonar[J].SPIE,2005,5778:800-808.

    [7]

    ANTOENLLI L,BLACKMON F.Experimental investigation of optical,remote,aerial sonar ' 02 MTS/IEEE.New York:IEEE,2002:1949-1955.

    [8]

    NI X W,CHEN X,LU J.Study on the mechanism of interaction between laser and liquid material[J].Laser Technology,2002,26(4):258-261(in Chinese).

    [9]

    VOGEL N,BUSCH S.Shock wave emission and cavitation bubble generation by picosecond and nanosecond optical breakdown in water[J].Journal of the Acoustical Society of America,1996,100(1):148-165.

计量
  • 文章访问数:  0
  • HTML全文浏览量:  0
  • PDF下载量:  7
  • 被引次数: 0
出版历程
  • 收稿日期:  2008-04-22
  • 修回日期:  2008-06-05
  • 发布日期:  2009-06-24

目录

    /

    返回文章
    返回