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Theoretical studies of energy levels and transition data for Zr III
Malmö University, Faculty of Technology and Society (TS), Department of Materials Science and Applied Mathematics (MTM).ORCID iD: 0000-0001-6818-9637
2020 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 637, article id A10Article in journal (Refereed) Published
Abstract [en]

Aims. We seek to present accurate and extensive transition data for the Zr III ion. These data are useful in many astrophysical applications.Methods. We used the multiconfiguration Dirac-Hartree-Fock and relativistic configuration interaction (RCI) methods, which are implemented in the general-purpose relativistic atomic structure package GRASP2018. The transverse-photon (Breit) interaction, vacuum polarization, and self-energy corrections are included in the RCI computations.Results. Energy spectra were calculated for the 88 lowest states in the Zr III ion. The root-mean-square deviation obtained in this study for computed energy spectra from the experimental data is 450 cm(-1). Electric dipole (E1), magnetic dipole (M1), and electric quadrupole (E2) transition data, line strengths, weighted oscillator strengths, and transition rates are computed between the above states together with the corresponding lifetimes. The computed transition rates are smaller than the experimental rates and the disagreement for weaker transitions is much larger than the experimental error bars. The computed lifetimes agree with available experimental values within the experimental uncertainties.

Place, publisher, year, edition, pages
EDP Sciences, 2020. Vol. 637, article id A10
Keywords [en]
atomic data
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
URN: urn:nbn:se:mau:diva-17923DOI: 10.1051/0004-6361/201937243ISI: 000546236300002OAI: oai:DiVA.org:mau-17923DiVA, id: diva2:1458143
Available from: 2020-08-14 Created: 2020-08-14 Last updated: 2022-04-26Bibliographically approved

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Jönsson, Per

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