One-Electron Energy Spectra of Heavy Highly Charged Quasimolecules: Finite-Basis-Set Approach

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

Abstract

The generalized dual-kinetic-balance approach for axially symmetric systems is employed to solve the two-center Dirac problem. The spectra of one-electron homonuclear quasimolecules are calculated and compared with the previous calculations. The analysis of the monopole approximation with two different choices of the origin is performed. Special attention is paid to the lead and xenon dimers, Pb82+–Pb82+–e− and Xe54+–Xe54+–e−, where the energies of the ground and several excited σ-states are presented in the wide range of internuclear distances. The developed method provides the quasicomplete finite basis set and allows for the construction of perturbation theory, including within the bound-state QED

Details

Original languageEnglish
Article number44
Pages (from-to)1
Number of pages9
JournalAtoms
Volume9
Issue number3
Publication statusPublished - 13 Jul 2021
Peer-reviewedYes

External IDs

Scopus 85111013601

Keywords

Keywords

  • Two-center Dirac equation, Heavy-ion collisions, Quasimolecules

Library keywords