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Generation of Ultrafast Attosecond Magnetic Field from Ne Dimer in Circularly Polarized Laser Pulses

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摘要 By numerically solving time-dependent Schr?dinger equations,we investigate the generation of electron currents,ultrafast magnetic fields and photoelectron momentum distributions(PMD) when circularly polarized laser pulses interact with a Ne dimer in the charge migration(CM) process.By adjusting the laser wavelength,we consider two cases:(i) coherent resonance excitation(λ=76 nm) and(ii) direct ionization(λ=38 nm).The results show that the current and magnetic field generated by the Ne dimer under resonance excitation are stronger than under direct ionization.This phenomenon is due to the quantum interference between the initial state 2pσ_(g) and the excited state 3sσ_(g) under resonance excitation,so the CM efficiency of the dimer can be improved and the strength of the PMD under different ionization conditions is opposite to the strength of the electron current and induced magnetic field.In addition,we also find that both 2pπ_(g) and 2pπ_(u) have coherent resonance excitation with 3sσ_(g) state and generate periodic oscillating currents for the Ne dimer.The study of the dynamics of the Ne dimer under different ionization conditions lays a foundation for research of ultrafast magnetism in complex molecular systems.
作者 闫淑娟 徐清芸 郝欣宇 郭颖 郭静 Shujuan Yan;Qingyun Xu;Xinyu Hao;Ying Guo;Jing Guo(Institute of Atomic and Molecular Physics,Jilin University,Changchun 130012,China)
出处 《Chinese Physics Letters》 SCIE EI CAS CSCD 2023年第11期37-41,共5页 中国物理快报(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.12074146 and 11974007) the Natural Science Foundation of Jilin Province(Grant No.20220101010JC)。
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