Zhang Zheng, Peng Liang-You, Gong Qihuang, Morishita Toru
Department of Physics and State Key Laboratory for Mesoscopic Physics, Peking University, Beijing 100871, People's Republic of China.
Opt Express. 2010 Apr 26;18(9):8976-89. doi: 10.1364/OE.18.008976.
We investigate the momentum and energy distributions of the two electrons in multiphoton double ionization of He by intense attosecond xuv pulses, based on a two-dimensional model. Two different patterns of the momentum distributions are identified, corresponding to the uncorrelated and correlated channels, respectively. Our analysis of the electron correlations focuses on two-photon and three-photon double ionization processes for different pulse durations and for different time delays after the pulses. For both two-photon and three-photon cases, a clear correlation valley in energy distributions is found when both electrons are ejected in opposite directions. This is mostly attributed to the electron correlations during the ionization of the first electron. We also find that when two electrons are ejected in the same direction, their Coulomb repulsion has an significant influence on the electron energy distributions during the postionization stage. Finally, in the case of three photon double ionization, we observe that the effects of the Coulomb repulsion become much more complicated, and a new catch-up collision phenomena is observed in the energy distributions.
基于二维模型,我们研究了强阿秒极紫外脉冲作用下氦原子多光子双电离过程中两个电子的动量和能量分布。识别出了两种不同的动量分布模式,分别对应不相关和相关通道。我们对电子关联的分析聚焦于不同脉冲持续时间以及脉冲后不同时间延迟下的双光子和三光子双电离过程。对于双光子和三光子情况,当两个电子沿相反方向射出时,在能量分布中都发现了明显的关联谷。这主要归因于第一个电子电离过程中的电子关联。我们还发现,当两个电子沿相同方向射出时,它们的库仑排斥在电离后阶段对电子能量分布有显著影响。最后,在三光子双电离的情况下,我们观察到库仑排斥的影响变得更加复杂,并且在能量分布中观察到了一种新的追赶碰撞现象。