Published November 1994 | Version v1
Journal article

Ab-initio calculation of the 2s21S0-2s3p 3P1 intercombination transition in beryllium-like ions

  • 1. Mathematical Inst., Oxford Univ. (United Kingdom)

Description

Transition probabilities of the 2s21S0-2s3p 1,3P1 intercombination and resonance lines have been calculated for 14 beryllium-like ions in the atomic range 7 ≤ Z ≤ 36. We used multiconfiguration Dirac-Fock wave functions to explore the effects of configuration interaction, of electron rearrangement as well as of relativity in a consistent scheme along the isoelectronic sequence. To show the number of configurations needed in a proper expansion of the wave functions we systematically enlarged the basis from small to large-scale. For the low-Z elements, virtual excitations of the 2s and 3p electrons up to the 5l subshells contribute significantly to the intercombination probability even though the transition energies remain almost unaffected by excitations beyond the 3l shells. The incomplete orthogonality of the orbital functions due to the rearrangement of the electron density clearly shifts the intercombination rates and appears to be independent of the configuration expansion. This effect decreases, as expected, at higher nuclear charges. (orig.)

Additional details

Publishing Information

Journal Title
Physica Scripta
Journal Volume
50
Journal Issue
5
Journal Page Range
p. 473-480.
ISSN
0031-8949
CODEN
PHSTBO