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Simulation of ablation and plume dynamics under femtosecond double-pulse laser irradiation of aluminum: Comparison of atomistic and continual approaches

机译:飞秒双脉冲铝辐照下烧蚀和羽流动力学的模拟:原子方法和连续方法的比较

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We elaborated two numerical methods, two-temperature hydrodynamics and hybrid two-temperature molecular dynamics, which take into account basic mechanisms of a metal target response to ultra short laser irradiation. The model used for the description of the electronic subsystem is identical for both approaches, while the ionic part is defined by an equation of state in hydrodynamics and by an interatomic potential in molecular dynamics. Since the phase diagram of the equation of state and corresponding potential match reasonably well, the dynamics of laser ablation obtained by both methods is quite similar. This correspondence can be considered as a first step towards the development of a self consistent combined model. Two important processes are highlighted in simulations of double-pulse ablation: (1) the crater depth decrease as a result of recoil flux formation in the nascent plume when the delay between the pulses increases; (2) the plume reheating by the second pulse that gives rise to two three-fold growth of the electron temperature with the delay varying from 0 to 200 ps. (C) 2016 Published by Elsevier B.V.
机译:我们阐述了两种数值方法:两温流体动力学和混合两温分子动力学,它们考虑了金属靶对超短激光辐射的响应的基本机理。两种方法用于描述电子子系统的模型都是相同的,而离子部分则由流体动力学中的状态方程和分子动力学中的原子间势来定义。由于状态方程的相图和相应的电势匹配得很好,因此两种方法获得的激光烧蚀动力学非常相似。这种对应关系可以看作是开发自洽组合模型的第一步。在双脉冲消融的模拟中突出了两个重要过程:(1)当脉冲之间的延迟增加时,新生羽流中反冲通量形成的结果是坑深减小。 (2)通过第二个脉冲对羽流进行再加热,这导致电子温度发生两次三倍增长,延迟范围为0到200 ps。 (C)2016由Elsevier B.V.发布

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