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Cite this article as: Wang Zhong-Yuan,Gao Xuan-Hong,Jing Wen-Quan,Du Jin-Xu,Zhao Song-Feng. The generation of spin-polarized electrons via strong-field ionization of atoms by circularly polarized laser fields [J]. J. At. Mol. Phys.(原子与分子物理学报), 2025, 42: 034001 (in Chinese)
The generation of spin-polarized electrons via strong-field ionization of atoms by circularly polarized laser fields
Hits 367  Download times 145  Received:September 10, 2023  Revised:September 27, 2023
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DOI   10.19855/j.1000-0364.2025.034001
Key Words   Spin-polarized electrons  nonadiabatic strong-field ionization  right circularly polarized laser fields
Author NameAffiliationE-mail
Wang Zhong-Yuan 西北师范大学  
Gao Xuan-Hong 西北师范大学  
Jing Wen-Quan 西北师范大学  
Du Jin-Xu 西北师范大学  
Zhao Song-Feng* Northwest Normal University zhaosf@nwnu.edu.cn 
Abstract
    Nonadiabatic strong-field ionization of atoms in circularly polarized laser fields has been used successfully for producing the spin-polarized electrons. We applied those analytical ionization rate formulas in [Ingo Barth and Olga Smirnova, Phys. Rev. A 88, 013401 (2013)] to study more systematically the generation of spin-polarized electrons through strong-field ionization of Kr and Xe atoms in right circularly polarized laser pulses and confirmed that photoelectron energy distributions are quite different for different spin states and the spin polarization of electrons depends sensitively on photoelectron energies. Furthermore, we also show that electrons with up to 100% spin polarization can achieve at the low-energy part of the energy spectra and the energy-integrated spin polarization can be well controlled by adjusting laser intensities and angular frequencies.

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