Evaluation of the low-lying energy levels of two- and three-electron configurations for multi-charged ions
arXiv:physics/0207053 · doi:10.1103/PhysRevA.67.012503
Abstract
Accurate QED evaluations of the one- and two-photon interelectron interaction for low lying two- and three-electron configurations for ions with nuclear charge numbers are performed. The three-photon interaction is also partly taken into account. The Coulomb gauge is employed. The results are compared with available experimental data and with different calculations. A detailed investigation of the behaviour of the energy levels of the configurations , near the crossing points Z=64 and Z=92 is carried out. The crossing points are important for the future experimental search for parity nonconserving (PNC) effects in highly charged ions.
Cited by in corpus (15)
- Dual kinetic balance approach to basis set expansions for the Dirac equation
- QED calculation of the n=1 and n=2 energy levels in He-like ions
- Relativistic recoil, electron-correlation, and QED effects on the 2p_j-2s transition energies in Li-like ions
- Progress in quantum electrodynamics theory of highly charged ions
- QED Effects in Heavy Few-Electron Ions
- Testing the time dependence of the fundamental constants in the spectra of multicharged ions
- Evaluation of the two-photon exchange diagrams for the electron configuration in Li-like ions
- QED calculation of transition probabilities in two-electron ions
- QED calculation of electron-electron correlation effects in heliumlike ions
- Calculation of quasi-degenerate energy levels of two-electron ions
- Screened self-energy correction to the 2p3/2-2s transition energy in Li-like ions
- Redefined vacuum approach and gauge-invariant subsets in two-photon-exchange diagrams for a closed-shell system with a valence electron
- Single photoeffect on helium-like ions in the non-relativistic region
- From heavy ions to exotic atoms
- Complex-scaled ab initio QED approach to autoionizing states