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Generation of inhomogeneous bulk plane acoustic modes by laser-induced thermoelastic grating near mechanically free surface

机译:机械自由表面附近的激光诱导热弹性光栅产生不均匀的体平面声模

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摘要

The detailed theoretical description of how picosecond plane shear acoustic transients can be excited by ultrafast lasers in isotropic media is presented. The processes leading to excitation of inhomogeneous plane bulk compression/dilatation (c/d) and shear acoustic modes by transient laser interference pattern at a mechanically free surface of an elastically isotropic medium are analyzed. Both pure modes are dispersive. The modes can be evanescent or propagating. The mechanical displacement vector in both propagating modes is oriented obliquely to the mode propagation direction. Consequently the c/d mode is not purely longitudinal and shear mode is not purely transversal. Each of the propagating modes has a plane wave front parallel to the surface and the amplitude harmonically modulated along the surface. Inhomogeneous shear acoustic mode cannot be generated in isotropic medium by thermal expansion and is excited by mode conversion of laser-generated inhomogeneous c/d acoustic mode incident on the surface. The spectral transformation function of me laser radiation conversion into shear modes has one of its maxima at a frequency corresponding to transmission from laser-induced generation of propagating to laser-induced generation of evanescent c/d modes. At this particular frequency the shear waves are due to their Cherenkov emission by bulk longitudinal acoustic waves skimming along the laser-irradiated surface, which are generated by laser-induced gratings synchronously. There exists an interval of frequencies where only shear acoustic modes are launched in the material by laser-induced grating, while c/d modes generated by thermoelastic optoacoustic conversion are evanescent. Propagating picosecond plane shear acoustic fronts excited by interference pattern of fs-ps laser pulses can be applied for the determination of the shear rigidity by optoacoustic echoes diagnostics of thin films and coatings. Theoretical predictions are correlated with available results of experiments and of numerical modeling.
机译:给出了在各向同性介质中如何通过超快激光激发皮秒平面剪切声瞬变的详细理论描述。分析了在弹性各向同性介质的机械自由表面上通过瞬态激光干涉图样激发不均匀平面体压缩/膨胀(c / d)和剪切声模的过程。两种纯模式都是分散的。模式可以是渐逝的或传播的。两种传播模式下的机械位移矢量都相对于模式传播方向倾斜。因此,c / d模式不是纯粹的纵向模式,剪切模式不是纯粹的横向模式。每个传播模式都有一个平行于表面的平面波前,并且振幅沿表面谐波调制。在各向同性介质中,不能通过热膨胀产生不均匀的剪切声模,而是通过入射在表面上的激光产生的不均匀c / d声模的模转换而激发。激光辐射转换成剪切模的光谱转换函数在对应于从传播的激光诱导生成到c逝的c / d模式的激光诱导生成的频率处具有其最大值之一。在此特定频率下,剪切波归因于沿激光辐照表面掠过的整体纵向声波的切伦科夫发射,该纵向声波是由激光感应光栅同步生成的。存在一个频率间隔,其中激光诱导的光栅在材料中仅发射剪切声学模,而由热弹性光声转换产生的c / d模正在消失。由fs-ps激光脉冲的干涉图样激发的皮秒平面剪切声波前沿传播,可用于通过薄膜和涂层的光声回波诊断来确定剪切刚度。理论预测与实验和数值建模的可用结果相关。

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  • 来源
    《Journal of Applied Physics 》 |2010年第11期| P.114906.1-114906.17| 共17页
  • 作者

    Vitalyi Gusev;

  • 作者单位

    LPEC, UMR-CNRS 6087, ENSIM, PRES UNAM, Universite du Maine, 72085 Le Mans, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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