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首页> 外文期刊>Journal of Applied Physics >Laser-induced plasmas from the ablation of metallic targets: The problem of the onset temperature, and insights on the expansion dynamics
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Laser-induced plasmas from the ablation of metallic targets: The problem of the onset temperature, and insights on the expansion dynamics

机译:金属靶材的烧蚀引起的激光诱导等离子体:起始温度问题以及对膨胀动力学的见解

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摘要

Laser-induced plasmas are transient systems rapidly aging in few nanoseconds of evolution. Time-of-flight spectrometry allowed studying initial plasma characteristics based on frozen translational degrees of freedom, hence overcoming intrinsic limitations of optical spectroscopy. Experimental ion velocity distributions were reconstructed as developed during the longitudinal plasma expansion. The obtained onset plasma temperatures are in the range of ~ 18-45 eV depending on the ablated metals. Also the ion angular spreads were found to be a function of ablated metal, e.g., the narrowest for Fe, the broadest for Al, due to different collisional coupling in the plasma population.
机译:激光诱导的等离子体是瞬态系统,在几纳秒的演化过程中迅速老化。飞行时间光谱分析技术可以根据冻结的平移自由度研究初始等离子体特征,从而克服了光谱学的固有局限性。实验性离子速度分布被重建为在纵向等离子体膨胀期间形成的。取决于烧蚀的金属,获得的起始等离子体温度在〜18-45 eV的范围内。还发现离子角展宽是被烧蚀的金属的函数,例如,由于等离子体群体中的不同碰撞偶合,对于Fe最窄,对于Al最宽。

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