Effect of Spin-Orbit Coupling on Decay Widths of Electronic Decay Processes
Abstract
Auger-Meitner processes are electronic decay processes of energetically low-lying vacancies. In these processes, the vacancy is filled by an electron of an energetically higher lying orbital, while another electron is simultaneously emitted to the continuum. In low-lying orbitals relativistic effects can not even be neglected for light elements. At the same time lifetime calculations are computationally expensive. In this context, we investigate which effect spin-orbit coupling has on Auger-Meitner decay widths and aim for a rule of thumb for the relative decay widths of initial states split by spin-orbit coupling. We base this rule of thumb on Auger-Meitner decay widths of Sr4 and Ra6 obtained by relativistic FanoADC-Stieltjes calculations.
Keywords
Cite
@article{arxiv.2001.08441,
title = {Effect of Spin-Orbit Coupling on Decay Widths of Electronic Decay Processes},
author = {Elke Fasshauer},
journal= {arXiv preprint arXiv:2001.08441},
year = {2020}
}
Comments
17 pages, 5 pictures