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Time Resolved Nomarski Interferometery Of Laser Produced Plasma Plumes

机译:时间分辨的Nomarski激光产生等离子体羽的干涉仪

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We report results from optical interferometric probing of a laser generated Zn plasma plume. The experiment was performed in a vacuum and O_2 rich environments where the background pressure of O_2 was maintained at 1000 Pa and the results from both regimes are compared. The focus of our work is very much on the early stages in the life of the plasma plume which remains, to date, a largely unexplored area of study, at least in the pulsed laser deposition research domain. It was found that the electron density profile normal to the target is different in the background gas at early times (~30 ns) compared to that of the vacuum case. At later times (~80 ns) both profiles have a very similar shape. We also observe the formation of a shock wave at the plasma-gas interface shortly after plasma breakdown (<15 ns).
机译:我们报告了激光产生的锌等离子体羽流的光学干涉探测的结果。实验是在真空和富含O_2的环境中进行的,其中O_2的背景压力保持在1000 Pa,并比较了两种方案的结果。我们的工作重点主要集中在等离子羽流生命的早期阶段,到目前为止,至少在脉冲激光沉积研究领域,等离子羽流仍是一个尚未探索的主要研究领域。结果发现,与真空情况相比,背景气体在早期(〜30 ns)时垂直于目标的电子密度分布有所不同。在稍后的时间(〜80 ns),两个轮廓都有非常相似的形状。我们还观察到等离子体击穿(<15 ns)后不久在等离子体-气体界面处形成了冲击波。

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