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Control of Cluster Multielectron lonization in Ultraintense Laser Fields

机译:超强激光场中团簇多电子电离的控制

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摘要

We performed classical molecular dynamics simulations to explore the controllability of the inner ionization process in Xe,, clusters (n = 2-2171), driven by ultraintense infrared Gaussian laser fields (peak intensity lM = 1O15-1O18 W crrf2, temporal pulse length T = 10-100 fs, and frequency v = 0.35 fs'1). Controllability of ion charge abundances and of their spatial distributions inside the cluster emerges from the different pulse length dependences of classical barrier suppression ionization (BSI) and of electron impact ionizations (Ell), as well as from the time scale of the Coulomb explosion (CE). For large clusters (Xe2ni), low intensities (1015 W cm"), and long pulses (x = 100 fs), EII is the dominating ionization channel, which favors the formation of maximum charged ions (XeI0+, Xe11+) in the cluster center. In contrast, BSI forms an inverse radial charge ordering with the highest charges in the exterior cluster shells. This suggests that the production of the two inverse radial charge distributions with an equal average ion charge can be forced by the choice of multiple pulses with different intensities and pulse lengths. At high intensities (1017-1018 W cm'2), where EII is insignificant and CE sets in much earlier, the BSI radial charge ordering and the enhancement of the ion charges beyond the single-atom limit by the ignition effect is observed only for short pulses.
机译:我们进行了经典的分子动力学模拟,以探索由超高强度红外高斯激光场(峰值强度lM = 1O15-1O18 W crrf2,时间脉冲长度T)驱动的Xe,簇(n = 2-2171)内部电离过程的可控性。 = 10-100 fs',频率v = 0.35 fs'1)。离子电荷丰度及其在簇内的空间分布的可控性来自经典势垒抑制电离(BSI)和电子碰撞电离(Ell)的不同脉冲长度依赖性,以及库仑爆炸的时标(CE) )。对于大型簇(Xe2ni),低强度(1015 W cm“)和长脉冲(x = 100 fs),EII是主要的电离通道,这有利于在簇中心形成最大带电离子(XeI0 +,Xe11 +)相比之下,BSI在外部簇壳中形成具有最高电荷的逆径向电荷顺序,这表明可以通过选择多个具有不同平均脉冲的脉冲来强制产生具有相等平均离子电荷的两个逆径向电荷分布强度和脉冲长度在高强度(1017-1018 W cm'2)时,EII无关紧要,CE设置得更早,BSI径向电荷有序排列,并且通过点火使离子电荷增强到超出单个原子极限仅在短脉冲时才观察到这种效应。

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