activity
20042009
most citedRelativistic and QED corrections to the g factor of Li-like ions

74 citations · 267 across the 9 of their papers we have counts for

collaborators

10 papers

physics.atom-ph2009

Screened QED corrections in lithiumlike heavy ions in the presence of magnetic fields

A. V. Volotka, D. A. Glazov, V. M. Shabaev +2

A rigorous evaluation of the complete gauge-invariant set of the screened one-loop QED corrections to the hyperfine structure and g factor in lithiumlike heavy ions is presented. T…

physics.atom-ph200862 cited

Ground-state hyperfine structure of H-, Li-, and B-like ions in middle-Z region

A. V. Volotka, D. A. Glazov, I. I. Tupitsyn +3

The hyperfine splitting of the ground state of H-, Li-, and B-like ions is investigated in details within the range of nuclear numbers Z = 7-28. The rigorous QED approach together…

physics.atom-ph200811 cited

Nuclear recoil effect on the magnetic-dipole decay rates of atomic levels

A. V. Volotka, D. A. Glazov, G. Plunien +2

The effect of finite nuclear mass on the magnetic-dipole transition probabilities between fine-structure levels of the same term is investigated. Based on a rigorous QED approach a…

physics.atom-ph200720 cited

Radiative and interelectronic-interaction corrections to the hyperfine splitting in highly charged B-like ions

N. S. Oreshkina, D. A. Glazov, A. V. Volotka +3

The ground-state hyperfine splitting values of high-Z boronlike ions are calculated. Calculation of the interelectronic-interaction contribution is based on a combination of the 1/…

physics.atom-ph200725 cited

QED calculation of the 2p1/2-2s and 2p3/2-2s transition energies and the ground-state hyperfine splitting in lithiumlike scandium

Y. S. Kozhedub, D. A. Glazov, A. N. Artemyev +5

We present the most accurate up-to-date theoretical values of the {2p_{1/2}}-{2s} and {2p_{3/2}}-{2s} transition energies and the ground-state hyperfine splitting in ${\rm Sc}^{18+…

physics.atom-ph20062 cited

Quantum electrodynamics of heavy ions and atoms

V. M. Shabaev, A. N. Artemyev, D. A. Glazov +3

The present status of quantum electrodynamics (QED) theory of heavy few-electron ions is reviewed. The theoretical results are compared with available experimental data. A special…