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Atomic partial wave meter by attosecond coincidence metrology

  • Wenyu Jiang
  • , Gregory S.J. Armstrong
  • , Jihong Tong
  • , Yidan Xu
  • , Zitan Zuo
  • , Junjie Qiang
  • , Peifen Lu
  • , Daniel D.A. Clarke
  • , Jakub Benda
  • , Avner Fleischer
  • , Hongcheng Ni
  • , Kiyoshi Ueda
  • , Hugo W. van der Hart
  • , Andrew C. Brown*
  • , Xiaochun Gong*
  • , Jian Wu*
  • *此作品的通讯作者
  • East China Normal University
  • Queen's University Belfast
  • Trinity College Dublin
  • Charles University
  • Tel Aviv University
  • Shanxi University
  • Chinese Academy of Sciences

科研成果: 期刊稿件文章同行评审

摘要

Attosecond chronoscopy is central to the understanding of ultrafast electron dynamics in matter from gas to the condensed phase with attosecond temporal resolution. It has, however, not yet been possible to determine the timing of individual partial waves, and steering their contribution has been a substantial challenge. Here, we develop a polarization-skewed attosecond chronoscopy serving as a partial wave meter to reveal the role of each partial wave from the angle-resolved photoionization phase shifts in rare gas atoms. We steer the relative ratio between different partial waves and realize a magnetic-sublevel-resolved atomic phase shift measurement. Our experimental observations are well supported by time-dependent R-matrix numerical simulations and analytical soft-photon approximation analysis. The symmetry-resolved, partial-wave analysis identifies the transition rate and phase shift property in the attosecond photoelectron emission dynamics. Our findings provide critical insights into the ubiquitous attosecond optical timer and the underlying attosecond photoionization dynamics.

源语言英语
文章编号5072
期刊Nature Communications
13
1
DOI
出版状态已出版 - 12月 2022

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