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Influence of surrounding gas, composition and pressure on plasma plume dynamics of nanosecond pulsed laser-induced aluminum plasmas

机译:周围气体,组成和压力对纳秒脉冲激光诱导铝等离子体的等离子体羽流动力学的影响

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In this article, we present a comprehensive study of the plume dynamics of plasmas generated by laser ablation of an aluminum target. The effect of both ambient gas composition (helium, nitrogen or argon) and pressure (from ~5 × 10?7 Torr up to atmosphere) is studied. The time- and space- resolved observation of the plasma plume are performed from spectrally integrated images using an intensified Charge Coupled Device (iCCD) camera. The iCCD images show that the ambient gas does not significantly influence the plume as long as the gas pressure is lower than 20 Torr and the time delay below 300 ns. However, for pressures higher than 20 Torr, the effect of the ambient gas becomes important, the shortest plasma plume length being observed when the gas mass species is highest. On the other hand, space- and time- resolved emission spectroscopy of aluminum ions at λ = 281.6 nm are used to determine the Time-Of-Flight (TOF) profiles. The effect of the ambient gas on the TOF profiles and therefore on the propagation velocity of Al ions is discussed. A correlation between the plasma plume expansion velocity deduced from the iCCD images and that estimated from the TOF profiles is presented. The observed differences are attributed mainly to the different physical mechanisms governing the two diagnostic techniques.
机译:在本文中,我们对铝靶材激光烧蚀产生的等离子体羽流动力学进行了全面研究。研究了环境气体成分(氦,氮或氩)和压力(从〜5×10?7 Torr到大气压)的影响。使用增强型电荷耦合器件(iCCD)摄像机从光谱积分图像中进行等离子体羽流的时间和空间分辨观察。 iCCD图像显示,只要气压低于20 Torr且时间延迟低于300 ns,环境气体就不会显着影响羽流。但是,对于高于20 Torr的压力,环境气体的影响变得很重要,当气体质量种类最高时,可以观察到最短的等离子体羽流长度。另一方面,铝离子在λ= 281.6 nm处的空间和时间分辨发射光谱用于确定飞行时间(TOF)曲线。讨论了环境气体对TOF轮廓的影响,并因此对Al离子的传播速度的影响。呈现了从iCCD图像推导出的血浆羽流膨胀速度与从TOF轮廓估算出的血浆羽流膨胀速度之间的相关性。观察到的差异主要归因于控制两种诊断技术的不同物理机制。

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