Valence and L-shell photoionization of Cl-like argon using R-matrix techniques

Photoionization cross-sections are obtained using the relativistic Dirac Atomic R-matrix Codes (darc) for all valence and L-shell energy ranges between 27 and 270 eV. A total of 557 levels arising from the dominant configurations 3s23p4, 3s3p5, 3p6, 3s23p3[3d, 4s, 4p], 3p53d, 3s23p23d2, 3s3p43d, 3s3...

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Veröffentlicht in:Monthly notices of the Royal Astronomical Society 2016-02, Vol.456 (1), p.366-373
Hauptverfasser: Tyndall, N. B., Ramsbottom, C. A., Ballance, C. P., Hibbert, A.
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Sprache:eng
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Zusammenfassung:Photoionization cross-sections are obtained using the relativistic Dirac Atomic R-matrix Codes (darc) for all valence and L-shell energy ranges between 27 and 270 eV. A total of 557 levels arising from the dominant configurations 3s23p4, 3s3p5, 3p6, 3s23p3[3d, 4s, 4p], 3p53d, 3s23p23d2, 3s3p43d, 3s3p33d2 and 2s22p53s23p5 have been included in the target wavefunction representation of the Ar iii ion, including up to 4p in the orbital basis. We also performed a smaller Breit–Pauli (bp) calculation containing the lowest 124 levels. Direct comparisons are made with previous theoretical and experimental work for both valence shell and L-shell photoionization. Excellent agreement was found for transitions involving the 2Po initial state to all allowed final states for both calculations across a range of photon energies. A number of resonant states have been identified to help analyse and explain the nature of the spectra at photon energies between 250 and 270 eV.
ISSN:0035-8711
1365-2966
DOI:10.1093/mnras/stv2637