TY - JOUR
T1 - Observation of QED Effects, Breit Interaction, and Electron Correlation in Highly Charged Au Ions Produced by a High-Power Laser
AU - Ma, Bubo
AU - Ren, Jieru
AU - Wang, Shaoyi
AU - Zhang, Shizheng
AU - Zhao, Ziqian
AU - Luo, Xuyang
AU - Yang, Mingzhe
AU - Wei, Wenqing
AU - Jiang, Wen
AU - Wang, Xing
AU - Gao, Yifang
AU - Hoffmann, Dieter H.H.
AU - Xu, Zhongfeng
AU - Li, Jianxing
AU - Ren, Xueguang
AU - Fan, Quanping
AU - Deng, Zhigang
AU - Qi, Wei
AU - Cui, Bo
AU - Wu, Yuchi
AU - Cao, Zhurong
AU - Zhao, Zongqing
AU - Gu, Yuqiu
AU - Zhang, Guoqing
AU - Dong, Chenzhong
AU - Cao, Leifeng
AU - Cheng, Rui
AU - Zhu, Shaoping
AU - Zhou, Weimin
AU - Xie, Luyou
AU - Zhao, Yongtao
N1 - Publisher Copyright:
© 2026 American Physical Society.
PY - 2026/4/10
Y1 - 2026/4/10
N2 - We report on measurements of extreme ultraviolet (EUV) radiation from highly charged gold ions in laser-produced plasma to investigate the quantum electrodynamics (QED) effects, Breit interaction, and electron correlation (EC) effects which play a crucial role in determining the energy levels of high-Z, highly charged ions. Specifically, we analyze emission lines from the 4s S21/2-4p P21/2 and 4d D23/2-4f F25/2 transitions in Cu-like Au ions (Au50+), where the ground state consists of a filled M-shell and a single 4s electron in the outermost shell. Utilizing the multiconfiguration Dirac-Hartree-Fock (MCDHF) method, we systematically calculated the energy levels and transition wavelengths. Our results show that only when QED effects, Breit interaction, finite nuclear size (FNS) corrections, and EC effects with sufficient electron configurations are included do the theoretical predictions align with experimental observations. By combining state-of-the-art experiments with high-precision computations, we resolve the long-standing discrepancies in the spectrum of Cu-like Au ions, providing the first quantitative delineation of QED effects, Breit interaction, FNS corrections, and EC effects on its energy levels. Our methodology is directly applicable to other highly charged ions, which are crucial for modeling astrophysical and laboratory plasmas.
AB - We report on measurements of extreme ultraviolet (EUV) radiation from highly charged gold ions in laser-produced plasma to investigate the quantum electrodynamics (QED) effects, Breit interaction, and electron correlation (EC) effects which play a crucial role in determining the energy levels of high-Z, highly charged ions. Specifically, we analyze emission lines from the 4s S21/2-4p P21/2 and 4d D23/2-4f F25/2 transitions in Cu-like Au ions (Au50+), where the ground state consists of a filled M-shell and a single 4s electron in the outermost shell. Utilizing the multiconfiguration Dirac-Hartree-Fock (MCDHF) method, we systematically calculated the energy levels and transition wavelengths. Our results show that only when QED effects, Breit interaction, finite nuclear size (FNS) corrections, and EC effects with sufficient electron configurations are included do the theoretical predictions align with experimental observations. By combining state-of-the-art experiments with high-precision computations, we resolve the long-standing discrepancies in the spectrum of Cu-like Au ions, providing the first quantitative delineation of QED effects, Breit interaction, FNS corrections, and EC effects on its energy levels. Our methodology is directly applicable to other highly charged ions, which are crucial for modeling astrophysical and laboratory plasmas.
UR - https://www.scopus.com/pages/publications/105036249678
U2 - 10.1103/6qn5-7rm8
DO - 10.1103/6qn5-7rm8
M3 - 文章
C2 - 42033672
AN - SCOPUS:105036249678
SN - 0031-9007
VL - 136
JO - Physical Review Letters
JF - Physical Review Letters
IS - 14
M1 - 143201
ER -