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Confinement effects of shock waves on laser-induced plasma from a graphite target

机译:冲击波对石墨靶材激光诱导等离子体的约束作用

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摘要

The spatial confinement effects of shock waves on the laser-induced plasma (LIP) from a graphite target in air were studied by probe beam deflection (PBD) measurements and optical emission spectroscopy (OES). A clear relationship between the confinement of the LIP by the shock wave and the effects on the LIP emission was observed, and the underlying mechanisms are discussed. PBD monitoring revealed that the laser-ablation induced shock wave could be well analogized to the shock wave generated by a point explosion and would be reflected by a block. OES measurements indicated that the optical emission of the LIP exhibited significant variations with the block placement. A first enhancement and then a fast decay of CN molecular emission as well as a suppression of carbon atomic emission were observed in the presence of the block. The results revealed that the reflected shock wave spatially confined the expansion of the LIP and compressed the LIP after encountering it, pushing back the species of the LIP and changing the density of the LIP species including luminous carbon atoms and CN molecules. It is suggested that the change of the LIP emission is attributed to the density variation of the LIP species due to the compression of the LIP and the reactions occurring in the plasma. (C) 2015 AIP Publishing LLC.
机译:通过探测光束偏转(PBD)测量和光发射光谱法(OES)研究了冲击波对来自空气中石墨靶的激光诱导等离子体(LIP)的空间限制作用。观察到了冲击波对LIP的限制与对LIP发射的影响之间的明确关系,并讨论了其潜在机理。 PBD监测显示,激光烧蚀引起的冲击波可以很好地类似于点爆炸产生的冲击波,并且会被块反射。 OES测量表明,LIP的光发射随块放置而显示出显着变化。在该嵌段存在下,观察到CN分子发射的先增强然后快速衰减以及碳原子发射的抑制。结果表明,反射的冲击波在空间上限制了LIP的膨胀并在遇到LIP后对其进行压缩,从而将LIP的种类推回并改变了LIP种类的密度,包括发光的碳原子和CN分子。提示LIP发射的变化归因于由于LIP的压缩和等离子体中发生的反应而导致的LIP种类的密度变化。 (C)2015 AIP Publishing LLC。

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