Shock waves from a water-confined laser-generated plasma

被引:455
作者
Berthe, L
Fabbro, R
Peyre, P
Tollier, L
Bartnicki, E
机构
[1] Lab. l'Applic. Lasers de Puissance, 94114 Arcueil Cedex, 16 bis, Ave. Prieur de la Cote d'Or
关键词
D O I
10.1063/1.366113
中图分类号
O59 [应用物理学];
学科分类号
摘要
Generation of a high amplitude shock wave by laser plasma in a water confinement regime has been investigated for an incident 25-30 ns/40 J/lambda=1.064 mu m pulsed laser beam. Experimental measurements of temporal and spatial profiles of induced shock waves for this regime of laser shock processing of materials were performed using a velocimetry interferometer system for any reflector system. Above a 10 GW/cm(2) laser intensity threshold, a saturation of the peak pressure is shown to occur while the pressure pulse duration is reduced by parasitic plasma occurring in the confining water. The observation of the interaction zone with a fast camera system shows that this breakdown plasma, which mainly occurs at the very surface of the water rather than within the water volume, limits the efficiency of the process. This plasma absorbs the incident laser energy, and the power density reaching the target gradually decreases with increasing power densities while the shock-wave duration is correspondingly reduced. Both pressure measurements and plasma observations allow explaining the current limit of high amplitude shock-waves generation by laser plasma in the water-confinement mode and open new research areas for the understanding of breakdown plasma effects at the surface of the confining water. (C) 1997 American institute of Physics.
引用
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页码:2826 / 2832
页数:7
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