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Simulation of ultrashort double-pulse laser ablation

机译:超短双脉冲激光烧蚀的仿真

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摘要

In this paper, we study the mechanisms of femtosecond double-pulse laser ablation of metals. It was previously shown experimentally that the crater depth monotonically drops when the delay between two successive pulses increases. For delays longer than the time of electron-ion relaxation the crater depth can be even smaller than that produced by a single pulse. The results of the performed hydrody-namic simulation show that the ablation can be suppressed due to the formation of the second shock wave. The modeling results of the double-pulse ablation obtained for different delays correlate with the experimental findings.
机译:在本文中,我们研究了飞秒双脉冲激光烧蚀金属的机理。先前通过实验表明,当两个连续脉冲之间的延迟增加时,弹坑深度会单调下降。对于比电子离子弛豫时间更长的延迟,弹坑深度甚至可以小于单个脉冲产生的弹坑深度。进行的水动力模拟的结果表明,由于第二冲击波的形成,可以抑制烧蚀。针对不同延迟而获得的双脉冲消融的建模结果与实验结果相关。

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