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Contra-Intuitive Features of Time-Domain Brillouin Scattering in Collinear Paraxial Sound and Light Beams

机译:相机横梁散射时域布里渊散射的对比特征

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摘要

Time-domain Brillouin scattering is an opto-acousto-optical probe technique for the evaluation of transparent materials. Via optoacoustic conversion, ultrashort pump laser pulses launch coherent acoustic pulses in the sample. Time-delayed ultrashort probe laser pulses monitor the propagation of the coherent acoustic pulses via the photo-elastic effect, which induces light scattering. A photodetector collects both the acoustically scattered light and the probe light reflected by the sample structure for the heterodyning. The scattered probe light carries information on the acoustical, optical and acousto-optical parameters of the material for the current position of the coherent acoustic pulse. Thus, among other applications, time-domain Brillouin scattering is a technique for three-dimensional imaging. Sharp focusing of coherent acoustic pulses and probe laser pulses could increase lateral spatial resolution of imaging, but could potentially diminish the depth of imaging. However, the theoretical analysis presented in this manuscript contra-intuitively demonstrates that the depth and spectral resolution of the time-domain Brillouin scattering imaging, with collinearly propagating paraxial sound and light beams, do not depend on the focusing/diffraction of sound. The variations of the amplitude of the time-domain Brillouin scattering signal are only due to the variations of the probe light amplitude caused by light focusing/diffraction. Although the amplitude of the acoustically scattered light is proportional to the product of the local acoustical and probe light field amplitudes, the temporal dynamics of the time-domain Brillouin scattering signal amplitude is independent of the dynamics of the coherent acoustic pulse amplitude.
机译:时域布里渊散射是一种光学探头技术,用于评估透明材料。通过光声转换,超短泵激光脉冲在样品中发射相干声学脉冲。时间延迟超短探针激光脉冲通过光弹性效果监测相干声脉冲的传播,效果诱导光散射。光电探测器收集由样品结构反射的声学散射光和探针光,以进行异差。散射探针光有关相干声脉冲的当前位置的材料的声学,光学和声光参数的信息。因此,在其他应用中,时域布里渊散射是三维成像的技术。相干声脉冲和探针激光脉冲的敏锐聚焦可以增加成像的横向空间分辨率,但可能会透明成像的深度。然而,本手稿中呈现的理论分析对抗直观地证明了时域布里渊散射成像的深度和光谱分辨率,具有共同传播的横柱和光束,不依赖于声音的聚焦/衍射。时域布里渊散射信号的幅度的变化仅是由于光聚焦/衍射引起的探针光幅度的变化。尽管声学散射光的幅度与局部声学和探测光场幅度的乘积成比例,但是时域布里渊散射信号幅度的时间动态与相干声脉冲幅度的动态无关。

著录项

  • 期刊名称 Photoacoustics
  • 作者

    Vitalyi E. Gusev;

  • 作者单位
  • 年(卷),期 2020(-1),-1
  • 年度 2020
  • 页码 -1
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:光声学;光声;激光超声;时域布里渊散射;Pic秒声干涉测量;成像;显微镜;
  • 入库时间 2022-08-21 12:16:29

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