THE HYPERFINE STRUCTURE OF HEAVY ELEMENTS ATOMS WITHIN RELATIVISTIC MANY-BODY PERTURBATION THEORY

Journal Title: Фотоэлекторника - Year 2018, Vol 27, Issue

Abstract

The hyperfine structure and electric quadrupole moment of the mercury isotope are estimated within the relativistic many-body perturbation theory formalism with a correct and effective taking into account the exchange-correlation, relativistic, nuclear and radiative corrections. Analysis of the data shows that an account of the interelectron correlation effects is crucial in the calculation of the hyperfine structure parameters. The fundamental reason of physically reasonable agreement between theory and experiment is connected with the correct taking into account the inter-electron correlation effects, nuclear (due to the finite size of a nucleus), relativistic and radiative corrections. The key difference between the results of the RHF, RMPT methods calculations is explained by using the different schemes of taking into account the inter-electron correlations.

Authors and Affiliations

O Antoshkina, O. Yu. Khetselius, M Makushkina, A. V. Smirnov

Keywords

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  • EP ID EP504509
  • DOI -
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How To Cite

O Antoshkina, O. Yu. Khetselius, M Makushkina, A. V. Smirnov (2018). THE HYPERFINE STRUCTURE OF HEAVY ELEMENTS ATOMS WITHIN RELATIVISTIC MANY-BODY PERTURBATION THEORY. Фотоэлекторника, 27(), -. https://europub.co.uk./articles/-A-504509