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Transition probabilities and lifetimes of the low-lying levels of Fe XIV
  • 期刊名称:Chin. Phys. B
  • 时间:0
  • 页码:063102-063102
  • 分类:O571.22[理学—粒子物理与原子核物理;理学—物理] O562.5[理学—原子与分子物理;理学—物理]
  • 作者机构:[1]Key Laboratory of Atomic and Molecular Physics & Functional Materials of Gansu Province, College of Physics and Electronic Engineering, Northwest Normal University, Lanzhou 730070, China, [2]Joint Laboratory of Atomic and Molecular Physics, Northwest Normal University and Institute of Modem Physics of the Chinese Academy of Sciences, Lanzhou 730070, China
  • 相关基金:Project supported by the National Natural Science Foundation of China (Grant Nos. 91126007, 11274254, 10964010, and 11064012).
  • 相关项目:极化电子与高电荷态离子碰撞激发、电离过程的相对论理论研究
中文摘要:

The transition energies and electric dipole(E1)transition rates of the K,L,and M lines in neutral Np have been theoretically determined from the MultiConfiguration Dirac–Fock(MCDF)method.In the calculations,the contributions from Breit interaction and quantum electrodynamics(QED)effects(vacuum polarization and self-energy),as well as nuclear finite mass and volume effects,are taken into account.The calculated transition energies and rates are found to be in good agreement with other experimental and theoretical results.The accuracy of the results is estimated and discussed.Furthermore,we calculated the transition energies of the same lines radiating from the decaying transitions of the K-,L-,and M-shell hole states of Np ions with the charge states Np1+to Np6+for the first time.We found that for a specific line,the corresponding transition energies relating to all the Np ions are almost the same;it means the outermost electrons have a very small influence on the inner-shell transition processes.

英文摘要:

The transition energies and electric dipole (El) transition rates of the K, L, and M lines in neutral Np have been theoretically determined from the MultiConfiguration Dirac-Fock (MCDF) method. In the calculations, the contributions from Breit interaction and quantum electrodynamics (QED) effects (vacuum polarization and self-energy), as well as nu- clear finite mass and volume effects, are taken into account. The calculated transition energies and rates are found to be in good agreement with other experimental and theoretical results. The accuracy of the results is estimated and discussed. Furthermore, we calculated the transition energies of the same lines radiating from the decaying transitions of the K-, L-, and M-shell hole states of Np ions with the charge states Np1+ to Np6+ for the first time. We found that for a specific line, the corresponding transition energies relating to all the Np ions are almost the same; it means the outermost electrons have a very small influence on the inner-shell transition processes.

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