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Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule

Zhenning Guo Peipei Ge Yiqi Fang Yankun Dou Xiaoyang Yu Jiguo Wang Qihuang Gong Yunquan Liu

Zhenning Guo, Peipei Ge, Yiqi Fang, Yankun Dou, Xiaoyang Yu, Jiguo Wang, Qihuang Gong, Yunquan Liu. 2022: Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule. 超快科学, 2022(2). doi: 10.34133/2022/9802917
引用本文: Zhenning Guo, Peipei Ge, Yiqi Fang, Yankun Dou, Xiaoyang Yu, Jiguo Wang, Qihuang Gong, Yunquan Liu. 2022: Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule. 超快科学, 2022(2). doi: 10.34133/2022/9802917
Zhenning Guo, Peipei Ge, Yiqi Fang, Yankun Dou, Xiaoyang Yu, Jiguo Wang, Qihuang Gong, Yunquan Liu. 2022: Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule. Ultrafast Science, 2022(2). doi: 10.34133/2022/9802917
Citation: Zhenning Guo, Peipei Ge, Yiqi Fang, Yankun Dou, Xiaoyang Yu, Jiguo Wang, Qihuang Gong, Yunquan Liu. 2022: Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule. Ultrafast Science, 2022(2). doi: 10.34133/2022/9802917

Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule

doi: 10.34133/2022/9802917
基金项目: 

This work is supported by the National Science Foundation of China (Grant Nos. 92050201, 11774013, and 11527901).

详细信息
    通讯作者:

    Correspondence should be addressed to Yunquan Liu

Probing Molecular Frame Wigner Time Delay and Electron Wavepacket Phase Structure of CO Molecule

Funds: 

This work is supported by the National Science Foundation of China (Grant Nos. 92050201, 11774013, and 11527901).

  • 摘要: The time delay of photoelectron emission serves as a fundamental building block to understand the ultrafast electron emission dynamics in strong-field physics. Here, we study the photoelectron angular streaking of CO molecules by using two-color ( 400+800nm) corotating circularly polarized fields. By coincidently measuring photoelectrons with the dissociative ions, we present molecular frame photoelectron angular distributions with respect to the instantaneous driving electric field signatures. We develop a semiclassical nonadiabatic molecular quantum-trajectory Monte Carlo (MO-QTMC) model that fully captures the experimental observations and further ab initio simulations. We disentangle the orientation-resolved contribution of the anisotropic ionic potential and the molecular orbital structure on the measured photoelectron angular distributions. Furthermore, by analyzing the photoelectron interference patterns, we extract the sub-Coulomb-barrier phase distribution of the photoelectron wavepacket and reconstruct the orientation- and energy-resolved Wigner time delay in the molecular frame. Holographic angular streaking with bicircular fields can be used for probing polyatomic molecules in the future.
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出版历程
  • 收稿日期:  2022-03-01
  • 修回日期:  2022-05-06
  • 刊出日期:  2022-05-26

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