English

Negative continuum effects on the two-photon decay rates of hydrogen-like ions

Atomic Physics 2015-05-13 v1

Abstract

Two--photon decay of hydrogen--like ions is studied within the framework of second--order perturbation theory, based on relativistic Dirac's equation. Special attention is paid to the effects arising from the summation over the negative--energy (intermediate virtual) states that occurs in such a framework. In order to investigate the role of these states, detailed calculations have been carried out for the 2s1/21s1/22s_{1/2} - 1s_{1/2} and 2p1/21s1/22p_{1/2} - 1s_{1/2} transitions in neutral hydrogen H as well as for hydrogen--like xenon Xe53+^{53+} and uranium U91+^{91+} ions. We found that for a correct evaluation of the total and energy--differential decay rates, summation over the negative--energy part of Dirac's spectrum should be properly taken into account both for high--ZZ and low--ZZ atomic systems.

Keywords

Cite

@article{arxiv.0908.2498,
  title  = {Negative continuum effects on the two-photon decay rates of hydrogen-like ions},
  author = {A. Surzhykov and J. P. Santos and P. Amaro and Paul Indelicato},
  journal= {arXiv preprint arXiv:0908.2498},
  year   = {2015}
}