Energy levels and transition rates for the boron isoelectronic sequence: Si X, Ti XVIII – Cu XXV

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Energy levels and transition rates for the boron isoelectronic sequence: Si X, Ti XVIII – Cu XXV

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Publication Article, peer reviewed scientific
Title Energy levels and transition rates for the boron isoelectronic sequence: Si X, Ti XVIII – Cu XXV
Author(s) Jönsson, Per ; Ekman, Jörgen ; Gustafsson, Stefan ; Hartman, Henrik ; Karlsson, Lennart ; du Rietz, Richard ; Gaigalas, Gediminas ; Godefroid, Michel ; Froese Fischer, Charlotte
Date 2013
English abstract
Relativistic configuration interaction (RCI) calculations are performed for 291 states belonging to the configurations 1s22s22p, 1s22s2p2, 1s22p3, 1s22s23l, 1s22s2p3l, 1s22p23l, 1s22s24l , 1s22s2p4l , and 1s22p24l (l = 0, 1,2 and l = 0, 1, 2, 3) in boron-like ions Si X and Ti XVIII to Cu XXV. Electron correlation effects are represented in the wave functions by large configuration state function (CSF) expansions. States are transformed from j j-coupling to LS -coupling, and the LS -percentage compositions are used for labeling the levels. Radiative electric dipole transition rates are given for all ions, leading to massive data sets. Calculated energy levels are compared with other theoretical predictions and crosschecked against the Chianti database, NIST recommended values, and other observations. The accuracy of the calculations are high enough to facilitate the identification of observed spectral lines.
DOI http://dx.doi.org/10.1051/0004-6361/201321893 (link to publisher's fulltext)
Publisher EDP Sciences
Host/Issue Astronomy & Astrophysics;
Volume 559
Pages A100
Language eng (iso)
Subject(s) Sciences
Research Subject Categories::NATURAL SCIENCES
Handle http://hdl.handle.net/2043/16475 (link to this page)

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