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Simulating translation-induced laser speckle dynamics in photon Doppler velocimetry

机译:在光子多普勒测速仪中模拟平移诱导的激光散斑动力学

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摘要

Historically, single-beam optical velocimetry has been limited to measuring only the component of velocity along the beam. However, theoretical work and recent experimental results have shown that laser speckle dynamics may be exploited to measure lateral motion, thereby gaining information about surface dynamics across an additional degree of freedom. In the use of photon Doppler velocimetry (PDV), this new information is considered "free" in that it is already contained within the PDV signal, needing only to be extracted and interpreted correctly. In this manuscript, we relate speckle dynamics to the lateral motion of a planar scattering surface in the PDV coordinate system via the space-time correlation function of the diffracted electric field. Next, we relate the characteristic time scale of speckle intensity fluctuations in the PDV signal to the rate of lateral surface translation and to parameters characterizing the optical probe. Analytical results are compared with a numerical simulation and found to be in close agreement.
机译:从历史上看,单光束测速仪仅限于仅测量沿光束的速度分量。但是,理论工作和最新的实验结果表明,可以利用激光散斑动力学来测量横向运动,从而获得有关附加自由度上的表面动力学的信息。在使用光子多普勒测速(PDV)时,此新信息被认为是“免费的”,因为它已经包含在PDV信号中,只需要正确地提取和解释即可。在此手稿中,我们通过衍射电场的时空相关函数将散斑动力学与PDV坐标系中平面散射表面的横向运动相关联。接下来,我们将PDV信号中斑点强度波动的特征时间标度与侧面平移速率和表征光学探头的参数相关。将分析结果与数值模拟进行比较,发现结果非常吻合。

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