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首页> 外文期刊>Chemical Physics Letters >Molecular photoelectron angular distributions with intense attosecond circularly polarized UV laser pulses
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Molecular photoelectron angular distributions with intense attosecond circularly polarized UV laser pulses

机译:具有强阿秒圆偏振紫外激光脉冲的分子光电子角分布

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摘要

We investigate effects of intermediate resonant electronic states on molecular photoelectron angular distributions (MPADs) by intense circularly polarized attosecond UV laser pulses. Simulations are performed on aligned H_2~+ by numerically solving the corresponding three dimensional time dependent Schr?dinger equations. MPADs exhibit signature of rotations, which is shown to be critically sensitive to the symmetry of the intermediate resonant electronic state and the pulse intensity. This sensitivity is attributed to the coherent population transfer in the initial and intermediate resonant states, thus suggesting a method to control molecular photoionization on attosecond time scale.
机译:我们通过强烈的圆偏振阿秒紫外激光脉冲研究中间共振电子态对分子光电子角分布(MPADs)的影响。通过数值求解对应的与时间相关的三维薛定er方程,对对齐的H_2〜+进行仿真。 MPAD具有旋转特征,已显示对中间共振电子状态和脉冲强度的对称性极为敏感。这种敏感性归因于在初始和中间共振状态下相干的种群转移,因此提出了一种在亚秒级时间尺度上控制分子光电离的方法。

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