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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Classical trajectory perspective on double-ionization dynamics of diatomic molecules irradiated by ultrashort intense laser pulses
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Classical trajectory perspective on double-ionization dynamics of diatomic molecules irradiated by ultrashort intense laser pulses

机译:超短强激光脉冲辐照的双原子分子双电离动力学的经典轨迹观点

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摘要

We develop a semiclassical quasistatic model accounting for molecular double ionization in an intense laser pulse. With this model, we achieve insight into the dynamics of two highly-correlated valence electrons under the combined influence of a two-center Coulomb potential and an intense laser field, and reveal the significant influence of molecular alignment on the ratio of double- over single-ion yield. Analysis of the classical trajectories unveils subcycle dynamics of the molecular double ionization. Many interesting features, such as the accumulation of emitted electrons in the first and third quadrants of the parallel-momentum plane and the regular pattern of correlated momentum with respect to the time delay between the closest collision and ionization moment, are revealed and successfully explained by back-analyzing the classical trajectories. Quantitative agreement with experimental data over a wide range of laser intensities from the tunneling to the over-the-barrier regime is presented.
机译:我们开发了一个半经典的准静态模型,用于解释强激光脉冲中的分子双电离。通过该模型,我们可以了解到两个高度相关的价电子在两个中心库仑电势和一个强激光场的共同影响下的动力学,并揭示了分子排列对单重比之大的影响。离子产率。对经典轨迹的分析揭示了分子双电离的子循环动力学。揭示并成功地解释了许多有趣的特征,例如在平行动量平面的第一象限和第三象限中发射电子的积累以及相对于最接近碰撞和电离矩之间的时间延迟的相关动量的规则模式。回溯经典轨迹。提出了从隧穿到越过阻挡层的各种激光强度实验数据的定量一致性。

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