Nuclear recoil effect on the g factor of highly charged Li-like ions
arXiv:1807.08495 · doi:10.1103/PhysRevA.98.032512
Abstract
The nuclear recoil effect on the g factor of highly charged Li-like ions is evaluated in the range Z=10-92. The calculations are performed using the 1/Z perturbation theory. The one-electron recoil contribution is evaluated within the fully relativistic approach with the wave functions which account for the screening effects approximately. The two-electron recoil contributions of the first and higher orders in 1/Z are calculated within the Breit approximation using a four-component approach.
5 pages
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- g Factor of Lithiumlike Silicon and Calcium: Resolving the Disagreement between Theory and Experiment
- Model-QED-operator approach to relativistic calculations of the nuclear recoil effect in many-electron atoms and ions
- Electron correlation effects on the factor of lithiumlike ions
- Relativistic nuclear recoil effect on the factor of highly charged boronlike ions
- QED calculations of the nuclear recoil effect on the bound-electron factor
- Interelectronic-interaction contribution to the nuclear recoil effect on the factor of boronlike ions
- QED theory of the normal mass shift in few-electron atoms
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- QED effects in quadratic Zeeman splitting in highly charged hydrogen-like ions
- factor of the excited states in lithium-like ions