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Characteristics of target polarization by laser ablation

机译:激光烧蚀的目标偏振特性

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摘要

Experimental results are obtained concerning the target polarization, which aptly characterizes the laser ablation. The charge separation in the laser-produced plasma, structure of the ion front, and the current of fast electrons expanding into the vacuum chamber ahead of ions are of crucial importance for the interpretation of multi-peak structure of target currents appearing much later than the laser pulse. Of particular interest is the correlation between the partial maxima in the time-resolved target current and the square root of mass number of ionized species. The late-time negative charging of targets provides evidence for production of very slow ions by ionization of neutrals ablated at the target crater by radiation from plasma produced by 23 ns excimer krypton fluoride laser.
机译:获得了与目标偏振有关的实验结果,该目标偏振恰当地表征了激光烧蚀。激光产生的等离子体中的电荷分离,离子前沿的结构以及在离子之前扩展到真空腔中的快速电子的电流对于解释比电流远晚出现的目标电流的多峰结构至关重要。激光脉冲。特别令人感兴趣的是时间分辨的目标电流中的局部最大值与电离物质的质数平方根之间的相关性。靶标的后期负电荷为通过23 ns受激准分子氟化laser激光产生的等离子体的辐射使靶标坑处烧蚀的中性离子电离而产生非常缓慢的离子提供了证据。

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