Fe III emission in quasars: evidence for a dense turbulent medium
arXiv:2006.08617 · doi:10.1093/mnras/staa1717
Abstract
Recent improvements to atomic energy-level data allow, for the first time, accurate predictions to be made for the Fe III line emission strengths in the spectra of luminous, erg/s, Active Galactic Nuclei. The Fe III emitting gas must be primarily photoionized, consistent with observations of line reverberation. We use CLOUDY models exploring a wide range of parameter space, together with 26,500 rest-frame ultraviolet spectra from the Sloan Digital Sky Survey, to constrain the physical conditions of the line emitting gas. The observed Fe III emission is best accounted for by dense ( cm) gas which is microturbulent, leading to smaller line optical depths and fluorescent excitation. Such high density gas appears to be present in the central regions of the majority of luminous quasars. Using our favoured model, we present theoretical predictions for the relative strengths of the Fe III UV34 1895,1914,1926 multiplet. This multiplet is blended with the Si III] 1892 and C III] 1909 emission lines and an accurate subtraction of UV34 is essential when using these lines to infer information about the physics of the broad line region in quasars.
12 pages, 11 figures, plus appendices
References in corpus (7)
- A Catalog of Quasar Properties from SDSS DR7
- The Sloan Digital Sky Survey Quasar Catalog: twelfth data release
- HST-COS Observations of AGN. II. Extended Survey of Ultraviolet Composite Spectra from 159 Active Galactic Nuclei
- Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. III. Detection of Fe II Reverberation in Nine Narrow-Line Seyfert 1 Galaxies
- Highly Accreting Quasars: Sample Definition and Possible Cosmological Implications
- State-of-the-art AGN SEDs for Photoionization Models: BLR Predictions Confront the Observations
- Stout: Cloudy's Atomic and Molecular Database
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