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Photoelectron Angular Distributions from Above Threshold Ionization of Hydrogen Atoms in Strong Laser Fields

机译:强激光场中氢原子阈值以上电离的光电子角分布

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We apply a scattering theory of nonperturbative quantum electrodynamics to study the photoelectron angular distributions (PADs) of a hydrogen atom irradiated by linearly polarized laser light. The calculated PADs show main lobes and jetlike structure. Previous experimental studies reveal that in a set of above-threshold-ionization peaks when the absorbed-photon number increases by one, the jet number also increases by one. Our study confirms this experimental observation. Our calculations further predict that in some cases three more jets may appear with just one-more-photon absorption. With consideration of laser-frequency change, one less jet may also appear with one-more-photon absorption. The jetlike structure of PADs is due to the maxima of generalized phased Bessel functions, not an indication of the quantum number of photoelectron angular momentum states.
机译:我们应用非微扰量子电动力学的散射理论来研究线偏振激光照射的氢原子的光电子角分布(PAD)。计算得出的PAD显示出主瓣和喷射状结构。先前的实验研究表明,在一组高于阈值的电离峰中,当吸收光子数增加一个时,射流数也增加一个。我们的研究证实了这一实验观察。我们的计算结果进一步预测,在某些情况下,可能会出现三个以上的射流,而光子的吸收量仅为一个。考虑到激光频率的变化,也可能出现少一束射流,而光子吸收则多一束。 PAD的喷射状结构是由于广义相控贝塞尔函数的最大值,而不是光电子角动量态的量子数的指示。

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