Theory of bound-electron g factor in highly charged ions
arXiv:1508.00392 · doi:10.1063/1.4921299
Abstract
The paper presents the current status of the theory of bound-electron g factor in highly charged ions. The calculations of the relativistic, QED, nuclear recoil, nuclear structure, and interelectronic-interaction corrections to the g factor are reviewed. Special attention is paid to tests of QED effects at strong coupling regime and determinations of the fundamental constants.
20 pages, 7 figures
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- Stringent tests of QED using highly charged ions
- Ground-state factor of highly charged Th ions: an access to the M1 transition probability between the isomeric and ground nuclear states
- Many body study of -factor in boron-like argon
- Nuclear recoil effect on the g factor of highly charged Li-like ions
- Hyperfine splitting in simple ions for the search of the variation of fundamental constants
- Testing Standard Model extensions with few-electron ions
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- Ground-state factor of middle- boronlike ions
- Electron correlation effects on the factor of lithiumlike ions
- Two-loop virtual light-by-light scattering corrections to the bound-electron factor
- Relativistic nuclear recoil effect on the factor of highly charged boronlike ions
- Roles of electron correlation effects for accurate determination of factors of low-lying states of Cd and their applications to atomic clock
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- Relativistic coupled-cluster theory analysis of unusually large correlation effects in the determination of factors in Ca
- 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
- Tank-Circuit Assisted Coupling Method for Sympathetic Laser Cooling
- Thermal corrections to the bound-electron -factor
- Relativistic calculation of the nuclear recoil effect on the factor of the state in highly charged B-like ions
- Radiative and photon-exchange corrections to New Physics contributions to energy levels in few-electron ions
- Thermal radiative corrections to hyperfine structure of light hydrogen-like systems
- Precision measurement of the Ca nuclear magnetic moment
- factor of the excited states in lithium-like ions
- Relativistic Correction to the Magnetic Moment of the Charged Lepton