Atomic data and spectral model for Fe III
arXiv:1007.1960 · doi:10.1088/2041-8205/718/2/L189
Abstract
We present new atomic data (radiative transitions rates and collision strengths) from large scale calculations and a non-LTE spectral model for Fe III. This model is in very good agreement with observed astronomical emission spectra, in contrast with previous models that yield large discrepancies with observations. The present atomic computations employ a combination of atomic physics methods, e.g. relativistic Hatree-Fock, the Thomas-Fermi-Dirac potential, and Dirac-Fock computation of A-values and R-matrix with intermediate coupling frame transformation and Dirac R-matrix. We study the advantages and shortcomings of each method. It is found that the Dirac R-matrix collision strengths yield excellent agreement with observations, much improved over previously available models. By contrast, the transformation of LS-coupling R-matrix fails to yield accurate effective collision strengths at around 10^4 K, despite using very large configuration expansions, due to the limited treatment of spin-orbit effects in the near threshold resonances of the collision strengths. The present work demonstrates that accurate atomic data for low ionization iron-peak species is now within reach.
15 pages, 3 figures. ApJ Letters (in press)
References in corpus (1)
Cited by in corpus (14)
- CHIANTI - An atomic database for Emission Lines. Version 8
- C/O abundance ratios, iron depletions, and infrared dust features in Galactic planetary nebulae
- Time-dependent excitation and ionization modelling of absorption-line variability due to GRB 080310
- Spitzer Infrared Spectrograph Observations of the Galactic Center: Quantifying the Extreme Ultraviolet/so ft X-ray fluxes
- Photoionized Herbig-Haro objects in the Orion Nebula through deep high-spectral resolution spectroscopy II: HH204
- Electron-impact excitation of Fe: a comparison of intermediate coupling frame transformation, Breit-Pauli and Dirac R-matrix calculations
- Atomic Data Assessment with PyNeb: Radiative and Electron Impact Excitation Rates for [Fe II] and [Fe III]
- Spitzer IRS Observations of the XA Region in the Cygnus Loop Supernova Remnant
- Energy levels, radiative rates and electron impact excitation rates for transitions in He-like Kr XXXV
- Emission line ratios of Fe III as astrophysical plasma diagnostics
- Energy levels, radiative rates and electron impact excitation rates for transitions in Be-like Ti XIX
- On the changes in the physical properties of the ionized region around the Weigelt structures in Eta Carinae over the 5.54-yr spectroscopic cycle
- Energy levels, radiative rates and electron impact excitation rates for transitions in He-like Ga XXX, Ge XXXI, As XXXII, Se XXXIII and Br XXXIV
- Electron-impact fine-structure excitation of Fe II at low temperature