Quantitative comparison of opacities calculated using the R-matrix and distorted-wave methods: Fe xvii

Author:

Delahaye F1,Ballance C P2,Smyth R T2,Badnell N R3

Affiliation:

1. Observatoire de Paris-LERMA, PSL Research University, Sorbonne Université, CNRS UMR 8112, F-75014 Paris, France

2. CTAMOP, School of Mathematics and Physics, Queen’s University, Belfast BT7 1NN, UK

3. Department of Physics, University of Strathclyde, Glasgow G4 0NG, UK

Abstract

ABSTRACT We present here a detailed calculation of opacities for Fe xvii at the physical conditions corresponding to the base of the Solar convection zone. Many ingredients are involved in the calculation of opacities. We review the impact of each ingredient on the final monochromatic and mean opacities (Rosseland and Planck). The necessary atomic data were calculated with the R-matrix and the distorted-wave (DW) methods. We study the effect of broadening, of resolution, of the extent of configuration sets and of configuration interaction to understand the differences between several theoretical predictions as well as the existing large disagreement with measurements. New Dirac R-matrix calculations including all configurations up to the n = 4, 5, and 6 complexes have been performed as well as corresponding Breit–Pauli DW calculations. The DW calculations have been extended to include autoionizing initial levels. A quantitative contrast is made between comparable DW and R-matrix models. We have reached self-convergence with n = 6 R-matrix and DW calculations. Populations in autoionizing initial levels contribute significantly to the opacities and should not be neglected. The R-matrix and DW results are consistent under the similar treatment of resonance broadening. The comparison with the experiment shows a persistent difference in the continuum while the filling of the windows shows some improvement. This study defines our path to the next generation of opacities and opacity tables for stellar modelling.

Funder

Sandia

CEA

CNRS

CNES

AFE

NRB

STFC

University of Strathclyde

CPB

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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