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多原子分子对超强激光场和离子诱导场的响应。

Response of polyatomic molecules to ultrastrong laser- and ion-induced fields.

作者信息

Schlathölter T, Hoekstra R, Zamith S, Ni Y, Muller H G, Vrakking M J J

机构信息

KVI Atomic Physics, Rijksuniversiteit Groningen, Zernikelaan 25, 9747AA Groningen, The Netherlands.

出版信息

Phys Rev Lett. 2005 Jun 17;94(23):233001. doi: 10.1103/PhysRevLett.94.233001. Epub 2005 Jun 13.

Abstract

The exposure of molecules to short, ultrastrong electric fields leads to multiple ionization and a subsequent Coulomb explosion. We present a comparative study where uracil molecules are exposed to fields generated by high-power laser pulses (tau approximately 75 fs, I > 10(16) W/cm2) or swift highly charged ions (0.5 MeV Xe25+) representing a half-cycle pulse of less than 10 fs duration. Molecular dynamics and structural information contained in the fragmentation pathways can be assessed separately. Despite the similar field strengths large differences in fragment kinetic energies are found which are related to field shape and duration with the aid of molecular dynamics simulations.

摘要

分子暴露于短的超强电场会导致多重电离以及随后的库仑爆炸。我们进行了一项对比研究,将尿嘧啶分子暴露于高功率激光脉冲(脉宽约75飞秒,强度I>10¹⁶瓦/平方厘米)或快速高电荷离子(0.5兆电子伏Xe²⁵⁺)产生的电场中,后者代表持续时间小于10飞秒的半周期脉冲。碎片化途径中包含的分子动力学和结构信息可以分别进行评估。尽管场强相似,但借助分子动力学模拟发现,碎片动能存在很大差异,这与场的形状和持续时间有关。

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