https://doi.org/10.1140/epjd/e2017-80652-1
Regular Article
Multipole effects in the photoionization processes of Mg isoelectronic series with Z = 12–22
1
College of Physical Science and Technology, Sichuan University,
Chengdu,
Sichuan
610065, P.R. China
2
Institute of Atomic and Molecular Physics, Sichuan University,
Chengdu,
Sichuan
610065, P.R. China
3
Department of Physics, Dong Hwa University,
Shoufeng,
Hualien
97401,
Taiwan, P.R. China
a e-mail: gjiang@scu.edu.cn
Received:
11
October
2017
Received in final form:
10
November
2017
Published online: 25
January
2018
In this paper, we calculate relativistic photoionization parameters for Mg and Mg-like ions for photon energies between 10 eV and 30 keV using Dirac–Fock initial discrete-state wave functions and final central-field continuum wave functions. By taking multipole contributions into account, we achieve results that are in good agreement with both experimental data and theoretical results for neutral Mg atoms, and are within 5% of the experimental data for photon energies above 1 keV. We also find that, in relativistic photoionization calculations, the magnetic quadrupole transition tends to be more important than the magnetic dipole transition. The effect of multipoles is studied in detail by considering the contribution of the electric dipole transition to the full multipole calculation.
Key words: Atomic Physics
© EDP Sciences, Società Italiana di Fisica, Springer-Verlag 2018