Relativistic configuration-interaction calculation of energy levels of core-excited states in lithium-like ions: argon through krypton
arXiv:1209.6520 · doi:10.1103/PhysRevA.86.042507
Abstract
Large-scale relativistic configuration-interaction calculation of energy levels of core-excited states of lithium-like ions is presented. Quantum electrodynamic, nuclear recoil, and frequency-dependent Breit corrections are included in the calculation. The approach is consistently applied for calculating all core-excited states for all lithium-like ions starting from argon () and ending with krypton (). The results obtained are supplemented with systematical estimations of calculation errors and omitted effects.