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Optical generation and detection of gigahertz shear acoustic waves in solids assisted by a metallic diffraction grating

机译:金属衍射光栅辅助辅助涂层剪切声波的光学产生和检测

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摘要

Absorption of ultrashort laser pulses in a metallic grating deposited on a transparent sample launches in the material both compression/dilatation (longitudinal) and shear coherent acoustic pulses in directions of different orders of acoustic diffraction. The propagation of the emitted acoustic pulses can be monitored by measuring the variation of the optical reflectivity of the time-delayed ultrashort probe laser pulses. The direction of probe light incidence and its polarization relative to the sample surface as well as the orientation of the metallic grating should be specifically chosen for efficient Brillouin scattering of the probe light from shear phonons propagating in the elastic-ally isotropic materials. As theoretically predicted, the obtained experimental data contain multiple frequency components which are due to a variety of possible Brillouin scattering angles for both shear and compression/dilatation coherent acoustic waves. All these different frequency components are explained through multiplexing the propagation directions of probe light and coherent sound by the metallic diffraction grating. Our experimental scheme of time-domain Brillouin scattering with metallic gratings operating in reflection mode provides access to monitoring the shear acoustic waves launched in the direction of the first diffraction order by backward Brillouin scattering process. Applications include simultaneous determination of several different acoustic mode velocities and optical refractive index and. potentially, measurements of the acoustic dispersion of samples with a single direction of possible optical access.
机译:在透明样品中的金属光栅中吸收超短的激光脉冲在透明样品中发射的压缩/扩张(纵向)和剪切相干声学脉冲在不同的声学衍射的方向上。可以通过测量时间延迟超短探针激光脉冲的光学反射率的变化来监测发出的声脉冲的传播。探针光入射的方向及其相对于样品表面的偏振以及金属光栅的取向应特别选择用于从弹性烯族各向同性材料中传播的剪切声区探测光的有效布里渊散射。在理论上预测,所获得的实验数据包含多个频率分量,这是由于剪切和压缩/扩展相干声波的各种可能的布里渊散射角度。通过使用金属衍射光栅复用探头光和相干声音的传播方向来解释所有这些不同的频率分量。我们在反射模式下操作的金属光栅散射的时域布里渊散射的实验方案提供了对通过后向布里渊散射过程监测在第一衍射顺序的方向上发射的剪切声波。应用包括同时测定几种不同的声学模式速度和光学折射率和光学折射率。潜在地,在可能的光学接入的单个方向上测量样品的声学分散。

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  • 来源
    《Physical review》 |2020年第22期|224307.1-224307.9|共9页
  • 作者单位

    Division of Applied Physics Faculty of Engineering Hokkaido University Sapporo Hokkaido 060-8628 Japan;

    Division of Applied Physics Faculty of Engineering Hokkaido University Sapporo Hokkaido 060-8628 Japan;

    Institut des Molecules et Materiaux du Mans UMR 6283 CNRS Le Mans Universite Avenue Olivier Messiaen 72085 Le Mans France;

    Institut des Molecules et Materiaux du Mans UMR 6283 CNRS Le Mans Universite Avenue Olivier Messiaen 72085 Le Mans France;

    Division of Applied Physics Faculty of Engineering Hokkaido University Sapporo Hokkaido 060-8628 Japan;

    Laboratoire d'Acoustique de l'Universite du Mans UMR 6613 CNRS Le Mans Universite Avenue Olivier Messiaen 72085 Le Mans France;

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