Electron-impact excitation of Fe II

Catherine Ramsbottom, C.J. Noble, V.M. Burke, Margaret Scott, Philip Burke

Research output: Contribution to journalArticle

1 Citation (Scopus)

Abstract

We report in this paper the computation of accurate total collision strengths and effective collision strengths for electron-impact excitation of FeII, using the parallel R-matrix program PRMAT. Target states corresponding to the 3d(6)4s, 3d(7), 3d(6)4p and 3d(5)4s4s basis configurations were included in the calculations giving rise to a 113 LS state 354 coupled channel problem. Following a detailed systematic study of correlation effects in both the target state and collision wavefunctions, it was found that an additional 21 configuration functions needed to be included in the Configuration Interaction expansion to obtain significantly more accurate target states and collision wavefunctions. This much improved 26-configuration model has been used to calculate converged total effective collision strengths for all sextet to quartet transitions among these levels with total spin S=2, giving a total of 1785 lines. These calculations have laid the foundation for an approach which may be adopted in the study of electron collisions with the low ionization stages of other iron peak elements. The work has been further extended with the commencement of a Breit-Pauli relativistic calculation for one of the smaller models and includes 262 fine-structure levels and over 1800 coupled channels. At the same time the PRMAT parallel R-matrix package is being extended to include relativistic effects which will allow us to attempt the more sophisticated 26-configuration model and produce for the first time the amount and quality of atomic data required to perform a meaningful synthesis of the Fe II spectrum.

Original languageEnglish
Article number062
Pages (from-to)283-286
Number of pages4
JournalJournal of Physics: Conference Series
Volume58
Issue number1
DOIs
Publication statusPublished - 01 Aug 2007
Event13th International Conference on Physics of Highly Charged Ions - QUB, Belfast, United Kingdom
Duration: 28 Aug 200601 Sept 2006
http://www.hci2006.qub.ac.uk/

ASJC Scopus subject areas

  • General Physics and Astronomy

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