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Direction-resolved homodyne laser-Doppler vibrometry by analyzing space-time fringes created by the successive 1D intensity profiles of the interference fringes

机译:通过分析干扰条纹的连续1D强度轮廓产生的时空条纹来分析方向分辨的彩色激光多普勒振动器

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In this Letter, we introduce a simple direction-resolved homodyne Laser-Doppler vibrometry method by sewing successive one-dimensional images of the interference pattern recorded by a linear array detector and creating a two-dimensional space-time fringe pattern. A space-time fringe pattern visualizes the vibration form, and it can be used for characterizing the vibration of the object. We measure the vibration of a harmonically driven loudspeaker as a known source to demonstrate the capability of the method. We also employ the method to characterize the vibrational properties of the resonator elements of a thin-disk laser. The method reveals the environmental and instrumental sources of the vibration. The use of an array detector in the detection system simplifies the fringe chasing procedure and optical setup and, by the aid of a space-time image, the vibration waveform is directly determined with no requirement for a time-consuming SPS algorithm. (C) 2019 Optical Society of America
机译:在这封信中,我们通过缝制由线性阵列检测器记录的干涉图案的连续一维图像来引入简单的方向分辨的仿生激光多普勒振动方法,并产生二维空间时间条纹图案。 空间时间条纹图案可视化振动形式,可用于表征物体的振动。 我们测量谐波驱动的扬声器的振动作为已知的源,以证明该方法的能力。 我们还采用该方法来表征薄盘激光器的谐振器元件的振动性质。 该方法揭示了振动的环境和仪器来源。 在检测系统中使用阵列检测器简化了边缘追逐过程和光学设置,并且借助于时空图像,直接确定振动波形,不需要耗时的SPS算法。 (c)2019年光学学会

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