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Photoelectron longitudinal momentum distributions containing nondipole effects

Photoelectron longitudinal momentum distributions containing nondipole effects
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摘要 This paper proposes a modified strong field approximation model for evaluating nondipole effects on the ionization of an atom in an intense laser field. The photoelectron longitudinal momentum distributions (PLMD) of a hydrogen-like atom exposed to a mid-infrared laser field is calculated. The theoretical results indicate an obvious asymmetry in the PLMD, and an offset of the PLMD peak appears in the opposite direction of the beam propagation due to nondipole effects. The peak offsets of the PLMD increased with the laser intensity, imposed by the initial state of the hydrogen-like atom. This paper proposes a modified strong field approximation model for evaluating nondipole effects on the ionization of an atom in an intense laser field. The photoelectron longitudinal momentum distributions (PLMD) of a hydrogen-like atom exposed to a mid-infrared laser field is calculated. The theoretical results indicate an obvious asymmetry in the PLMD, and an offset of the PLMD peak appears in the opposite direction of the beam propagation due to nondipole effects. The peak offsets of the PLMD increased with the laser intensity, imposed by the initial state of the hydrogen-like atom.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期335-340,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.11274149) the Program of Shenyang Key Laboratory of Optoelectronic Materials and Technology,China(Grant No.F12-254-1-00)
关键词 strong field approximation PHOTOELECTRON longitudinal momentum distributions nondipole effects strong field approximation, photoelectron, longitudinal momentum distributions, nondipole effects
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