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Laser-ablation-plume thermalization dynamics in background gases studied by time-resolved imaging spectroscopic and ion probe diagnostics

机译:通过时间分辨成像光谱和离子探针诊断研究背景气体中的激光烧蚀-液体热化动力学

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Abstract: A combination of fast plasma diagnostics are utilized to probe the propagation of laser ablation plumes in vacuum and low-pressure background gases in order to understand key gas dynamic processes relevant to film growth by pulsed laser deposition. During expansion into low-pressure background gases, the ion flux in the plasma plume splits into fast and slow components over a limited range of distances and times. This general effect is presented here for the case of yttrium ablation into argon, a single-element target into an inert gas. Time- resolved optical absorption spectroscopy and optical emission spectroscopy are employed to simultaneously view the populations of both excited and ground states of Y and Y$+$PLU$/ for comparison with intensified-CCD photography of the visible plume luminescence and ion flux measurements made with fast ion probes during this phenomenon. These measurements indicate that plume-splitting in background gases is consistent with momentum transfer from an initial, vacuum velocity distribution into a second, slowed velocity distribution initiated by scattering collisions between plume and background gas atoms. The fast distribution is exponentially attenuated in accordance with Beer's law, and the second, slowed distribution coalesces into a stable, propagating shock structure.!19
机译:摘要:利用快速等离子体诊断技术来探测激光烧蚀羽流在真空和低压本底气体中的传播,从而了解与脉冲激光沉积法成膜有关的关键气体动力学过程。在膨胀为低压本底气体的过程中,等离子羽流中的离子通量在有限的距离和时间范围内分成快速和慢速成分。对于将钇烧蚀成氩气,将单元素靶烧蚀成惰性气体的情况,在这里介绍了这种一般效果。使用时间分辨光吸收光谱法和光发射光谱法同时观察Y和Y $ + $ PLU $ /的激发态和基态态,以与可见光羽流的增强CCD摄影和离子通量测量进行比较在出现这种现象时,请使用快速离子探针。这些测量结果表明,背景气体中的羽流分裂与动量从初始真空速度分布向第二种慢速速度分布的转移是一致的,该速度分布是由羽流和背景气体原子之间的碰撞碰撞引发的。根据比尔定律,快速分布呈指数衰减,而第二个较慢的分布则合并为稳定的传播冲击结构!19

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