Nuclear recoil correction to the g factor of boron-like argon
arXiv:1411.6136 · doi:10.1088/1742-6596/583/1/012001
Abstract
The nuclear recoil effect to the g factor of boron-like ions is investigated. The one-photon-exchange correction to the nuclear recoil effect is calculated in the non-relativistic approximation for the nuclear recoil operator and in the Breit approximation for the interelectronic-interaction operator. The screening potential is employed to estimate the higher-order contributions. The updated g-factor values are presented for the ground 2P_1/2 and first excited 2P_3/2 states of B-like argon 40^Ar^13+, which are presently being measured by the ARTEMIS group at GSI.
5 pages, 2 figures, submitted to Journal of Physics
References in corpus (7)
- High-precision measurement of the atomic mass of the electron
- g factor of lithiumlike silicon 28Si11+
- QED calculation of the 2p3/2-2p1/2 transition energy in five-electron ion of argon
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Cited by in corpus (10)
- Coherent laser spectroscopy of highly charged ions using quantum logic
- -factor of Boronlike Argon
- Recoil effect on the g factor of Li-like ions
- QED corrections to the factor of Li- and B-like ions
- Ground-state factor of middle- 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
- Factor of Boron-like Tin
- QED effects in quadratic Zeeman splitting in highly charged hydrogen-like ions
- factor of the excited states in lithium-like ions