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水中光击穿诱导的冲击波聚焦

Focusing of shock waves induced by optical breakdown in water.

作者信息

Sankin Georgy N, Zhou Yufeng, Zhong Pei

机构信息

Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708, USA.

出版信息

J Acoust Soc Am. 2008 Jun;123(6):4071-81. doi: 10.1121/1.2903865.

Abstract

The focusing of laser-generated shock waves by a truncated ellipsoidal reflector was experimentally and numerically investigated. Pressure waveform and distribution around the first (F(1)) and second foci (F(2)) of the ellipsoidal reflector were measured. A neodymium doped yttrium aluminum garnet laser of 1046 nm wavelength and 5 ns pulse duration was used to create an optical breakdown at F(1), which generates a spherically diverging shock wave with a peak pressure of 2.1-5.9 MPa at 1.1 mm stand-off distance and a pulse width at half maximum of 36-65 ns. Upon reflection, a converging shock wave is produced which, upon arriving at F(2), has a leading compressive wave with a peak pressure of 26 MPa and a zero-crossing pulse duration of 0.1 mus, followed by a trailing tensile wave of -3.3 MPa peak pressure and 0.2 mus pulse duration. The -6 dB beam size of the focused shock wave field is 1.6 x 0.2 mm(2) along and transverse to the shock wave propagation direction. Formation of elongated plasmas at high laser energy levels limits the increase in the peak pressure at F(2). General features in the waveform profile of the converging shock wave are in qualitative agreement with numerical simulations based on the Hamilton model.

摘要

通过截断椭球体反射器对激光产生的冲击波进行聚焦的实验和数值研究。测量了椭球体反射器第一焦点(F(1))和第二焦点(F(2))周围的压力波形和分布。使用波长为1046 nm、脉冲持续时间为5 ns的掺钕钇铝石榴石激光器在F(1)处产生光学击穿,在1.1 mm的间隔距离处产生峰值压力为2.1 - 5.9 MPa、半高宽为36 - 65 ns的球形发散冲击波。反射后,产生一个会聚冲击波,该冲击波到达F(2)时,有一个峰值压力为26 MPa、零交叉脉冲持续时间为0.1 μs的前沿压缩波,随后是一个峰值压力为 - 3.3 MPa、脉冲持续时间为0.2 μs的后沿拉伸波。聚焦冲击波场的 - 6 dB光束尺寸在与冲击波传播方向平行和垂直方向上分别为1.6×0.2 mm²。在高激光能量水平下形成的拉长等离子体限制了F(2)处峰值压力的增加。会聚冲击波波形轮廓的一般特征与基于汉密尔顿模型的数值模拟在定性上一致。

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