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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Retrieval of electron-atom scattering cross sections from laser-induced electron rescattering of atomic negative ions in intense laser
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Retrieval of electron-atom scattering cross sections from laser-induced electron rescattering of atomic negative ions in intense laser

机译:从强激光中激光诱导原子负离子的电子散射获取电子-原子散射截面

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We investigated the two-dimensional electron momentum distributions of atomic negative ions in an intense laser field by solving the time-dependent Schrodinger equation (TDSE) and using the first- and second-order strong-field approximations (SFAs). We showed that photoelectron energy spectra and low-energy photoelectron momentum distributions predicted from SFAs are in reasonable agreement with the solutions from the TDSE. More importantly, we showed that accurate electron-atom elastic scattering cross sections can be retrieved directly from high-energy electron momentum spectra of atomic negative ions in the laser field. This opens up the possibility of measuring electron-atom and electron-molecule scattering cross sections from the photodetachment of atomic and molecular negative ions by intense short lasers, respectively, with temporal resolutions in the order of femtoseconds.
机译:我们通过求解时间相关的薛定inger方程(TDSE)并使用一阶和二阶强场近似(SFA),研究了强激光场中原子负离子的二维电子动量分布。我们表明,由SFA预测的光电子能谱和低能光电子动量分布与TDSE的解合理吻合。更重要的是,我们表明,可以直接从激光场中原子负离子的高能电子动量谱中检索出准确的电子-原子弹性散射截面。这就开辟了通过强短激光分别以飞秒量级的时间分辨率测量原子和分子负离子光解离电子原子和电子分子散射截面的可能性。

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