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激光诱导冲击波的超快测量。

Ultrafast measurement of laser-induced shock waves.

作者信息

Lokar Žiga, Horvat Darja, Petelin Jaka, Petkovšek Rok

机构信息

University of Ljubljana, Faculty of Mechanical Engineering, Aškerčeva 6, 1000 Ljubljana, Slovenia.

出版信息

Photoacoustics. 2023 Feb 23;30:100465. doi: 10.1016/j.pacs.2023.100465. eCollection 2023 Apr.

Abstract

We present measurements of laser-induced shockwave pressure rise time in liquids on a sub-nanosecond scale, using custom-designed single-mode fiber optic hydrophone. The measurements are aimed at the study of the shockwave generation process, helping to improve the effectiveness of various applications and decrease possible accidental damage from shockwaves. The developed method allows measurement of the fast shockwave rise time as close as 10 µm from an 8 µm sized laser-induced plasma shockwave source, significantly improving the spatial and temporal resolution of the pressure measurement over other types of hydrophones. The spatial and temporal limitations of the presented hydrophone measurements are investigated theoretically, with actual experimental results agreeing well with the predictions. To demonstrate the capabilities of the fast sensor, we were able to show that the shockwave rise time is linked to liquid viscosity exhibiting logarithmic dependency in the low viscosity regime (from 0.4 cSt to 50 cSt). Additionally, the shockwave rise time dependency on propagation distance close to the source in water was investigated, with shock wave rise times measured down to only 150 ps. It was found that at short propagation distances in water halving the shock wave peak pressure results in the rise time increase by approximately factor of 1.6. These results extend the understanding of shockwave behavior in low viscosity liquids.

摘要

我们使用定制设计的单模光纤水听器,展示了在亚纳秒尺度上对液体中激光诱导冲击波压力上升时间的测量。这些测量旨在研究冲击波的产生过程,有助于提高各种应用的有效性,并减少冲击波可能造成的意外损害。所开发的方法能够在距离8微米大小的激光诱导等离子体冲击波源仅10微米的位置测量快速冲击波上升时间,与其他类型的水听器相比,显著提高了压力测量的空间和时间分辨率。从理论上研究了所展示的水听器测量的空间和时间限制,实际实验结果与预测结果吻合良好。为了展示这种快速传感器的能力,我们能够证明冲击波上升时间与液体粘度有关,在低粘度范围(从0.4厘沲到50厘沲)呈现对数依赖性。此外,研究了水中靠近源处冲击波上升时间对传播距离的依赖性,测量到的冲击波上升时间低至150皮秒。结果发现,在水中短传播距离处,冲击波峰值压力减半会导致上升时间增加约1.6倍。这些结果扩展了对低粘度液体中冲击波行为的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3b/9974415/8482c7873027/gr1.jpg

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