QED corrections to the factor of Li- and B-like ions
arXiv:2004.06607 · doi:10.1103/PhysRevA.101.062513
Abstract
QED corrections to the factor of Li-like and B-like ions in a wide range of nuclear charges are presented. Many-electron contributions as well as radiative effects on the one-loop level are calculated. Contributions resulting from the interelectronic interaction, the self-energy effect, and most of the terms of the vacuum-polarization effect are evaluated to all orders in the nuclear coupling strength . Uncertainties resulting from nuclear size effects, numerical computations, and uncalculated effects are discussed.
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Cited by in corpus (14)
- Ground-state factor of highly charged Th ions: an access to the M1 transition probability between the isomeric and ground nuclear states
- g Factor of Lithiumlike Silicon and Calcium: Resolving the Disagreement between Theory and Experiment
- Testing Standard Model extensions with few-electron ions
- Self-energy screening effects in the factor of Li-like ions
- Electron correlation effects on the factor of lithiumlike ions
- Two-photon exchange corrections to the factor of Li-like ions
- Testing inter-electronic interaction in lithium-like tin
- Hadronic vacuum polarization correction to atomic energy levels
- Factor of Boron-like Tin
- Hadronic vacuum polarization correction to the bound-electron factor
- Radiative and photon-exchange corrections to New Physics contributions to energy levels in few-electron ions
- QED effects in quadratic Zeeman splitting in highly charged hydrogen-like ions
- factor of the excited states in lithium-like ions
- Fermion selective tests of new physics with the bound electron g-factor