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Detection of laser induced dielectric breakdown in water using a laser doppler vibrometer

机译:使用激光多普勒振动计检测水中激光诱导的介电击穿

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摘要

This study is focused on exploring the feasibility of an all-optic surface scanning method in determining the size and position of a submerged, laser generated, optoacoustic source. The optoacoustic effect was here generated when the absorption of a short electromagnetic pulse in matter caused a dielectric breakdown, a plasma emission flash and a subsequent acoustic wave. In the experiment, a laser pulse with l = 1064 nm and 12 ns pulse length was aimed at a volume of deionized water. When the laser beam was focused by a f = 16 mm lens, a single dielectric breakdown spot occurred. When a f = 40 mm was used several breakdowns in a row were induced. The breakdowns were photographed using a double shutter camera. The acoustic wave generated by the dielectric breakdowns were detected at a point on the water surface using a laser Doppler vibrometer (LDV). First, the LDV signal was used to calculate the speed of sound with an accuracy of 10 m/s. Secondly, the location and length of the dielectric breakdown was calculated with an accuracy of 1 mm. The calculated position matched the breakdown location recorded by a camera. The results show that it is possible to use LDV surface measurements from a single spot to determine both the position and length of the OA source as well as the speed of sound in the medium. Furthermore, the LDV measurements also show a secondary peak that originates from the OA source. To unravel the origin and properties of this interesting feature, further investigations are necessary.
机译:这项研究的重点是探索全光学表面扫描方法在确定浸没式激光产生的光声源的尺寸和位置方面的可行性。当物质中短电磁脉冲的吸收引起介电击穿,等离子体发射闪光和随后的声波时,就会产生光声效应。在实验中,将l = 1064 nm和12 ns脉冲长度的激光脉冲对准去离子水的体积。当激光束通过f = 16 mm透镜聚焦时,会出现单个介电击穿点。当使用f = 40 mm时,连续引起多次击穿。使用双快门相机拍摄故障。使用激光多普勒振动计(LDV)在水表面的某个点检测由电介质击穿产生的声波。首先,LDV信号用于计算声速,精度为10 m / s。其次,电介质击穿的位置和长度的计算精度为1 mm。计算出的位置与摄像机记录的故障位置相匹配。结果表明,可以使用单个位置的LDV表面测量来确定OA源的位置和长度以及介质中的声速。此外,LDV测量值还显示了一个来自OA源的次级峰。为了弄清此有趣功能的起源和性质,有必要做进一步的研究。

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