A fully relativistic approach to photon scattering and photoionization of alkali atoms
Citation
Singor, A. and Fursa, D. and Bray, I. and McEachran, R. 2021. A fully relativistic approach to photon scattering and photoionization of alkali atoms. Atoms. 9 (3): 42.
Source Title
Atoms
ISSN
Faculty
Faculty of Science and Engineering
School
School of Elec Eng, Comp and Math Sci (EECMS)
Collection
Abstract
A fully relativistic approach to calculating photoionization and photon-atom scattering cross sections for quasi one-electron atoms is presented. An extensive set of photoionization cross sections have been calculated for alkali atoms: Lithium, sodium, potassium, rubidium and cesium. The importance of relativistic effects and core polarization on the depth and position of the Cooper minimum in the photoionization cross section is investigated. Good agreement was found with previous Dirac-based B-spline R-matrix calculations of Zatsarinny and Tayal and recent experimental results.
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