Skip to main navigation Skip to search Skip to main content

Satellite lines from autoionizing states of Fe XVI and the problems with the X-ray Fe XVII lines

  • G Del Zanna
  • , N R Badnell
  • , P J Storey

Research output: Contribution to journalArticlepeer-review

10 Downloads (Pure)

Abstract

We present new calculations of atomic data needed to model auto-ionizing states of Fe xvi. We compare the state energies, radiative and excitation data with a sample of results from previous literature. We find a large scatter of results, the most significant ones in the auto-ionization rates, which are very sensitive to the configuration interaction and state mixing. We find relatively good agreement between the auto-ionization rates and the collisional excitation rates calculated with the R-matrix suite of programs and autostructure. The largest model, which includes J-resolved states up to $n=10$, produces ab-initio wavelengths and intensities of the satellite lines which agree well with solar high-resolution spectra of active regions, with few minor wavelength adjustments. We review previous literature, finding many incorrect identifications, most notably those in the NIST data base. We provide several new tentative identifications in the 15–15.7 Å range, and several new ones at shorter wavelengths, where previous lines were unidentified. Compared to the previous CHIANTI model, the present one has an increased flux in the 15–15.7 Å range at 2 MK of a factor of 1.9, resolving the discrepancies found in the analysis of the Marshall Grazing Incidence X-Ray Spectrometer observation. It appears that the satellite lines also resolve the long-standing discrepancy in the intensity of the important Fe xvii 3D line at 15.26 Å.
Original languageEnglish
Pages (from-to)305–321
Number of pages17
JournalMonthly Notices of the Royal Astronomical Society
Volume532
Issue number1
Early online date13 Jun 2024
DOIs
Publication statusPublished - 26 Jun 2024

Funding

GDZ acknowledges support from STFC (UK) via the consolidated grants to the atomic astrophysics group (AAG) at DAMTP, University of Cambridge (ST/P000665/1. and ST/T000481/1). The UK APAP network is funded by STFC via the consolidated grant (PI Badnell) to the University of Strathclyde (ST/V000683/1).

Keywords

  • atomic data
  • atomic processes
  • Sun
  • X-rays

Fingerprint

Dive into the research topics of 'Satellite lines from autoionizing states of Fe XVI and the problems with the X-ray Fe XVII lines'. Together they form a unique fingerprint.

Cite this