English

Influence of atomic modeling on electron capture and shaking processes

Atomic Physics 2024-04-02 v3

Abstract

Ongoing experimental efforts to measure with unprecedented precision electron-capture probabilities challenges the current theoretical models. The short range of the weak interaction necessitates an accurate description of the atomic structure down to the nucleus region. A recent electron-capture modeling has been modified in order to test the influence of three different atomic descriptions on the decay and shaking probabilities. To this end, a specific atomic modeling was developed in the framework of the relativistic density-functional theory, exploring several exchange-correlation functionals and self-interaction-corrected models. It was found that the probabilities of total shaking, tested on both photoionization and electron-capture processes, depend strongly on the accuracy of the atomic modeling. Predictions of capture probabilities have been compared with experimental values evaluated from available published data for different radionuclides from 7^{7}Be to 138^{138}La. New high-precision measurements are strongly encouraged because the accuracy of the current experimental values is insufficient to test the models beyond the inner shells.

Keywords

Cite

@article{arxiv.2111.15321,
  title  = {Influence of atomic modeling on electron capture and shaking processes},
  author = {A. Andoche and L. Mouawad and P. -A. Hervieux and X. Mougeot and J. Machado and J. P. Santos},
  journal= {arXiv preprint arXiv:2111.15321},
  year   = {2024}
}

Comments

36 pages, 7 figures and 3 tables

R2 v1 2026-06-24T07:57:33.836Z