Fe II Diagnostic Tools for Quasars
arXiv:astro-ph/0404593 · doi:10.1086/422303
Abstract
The enrichment of Fe, relative to alpha-elements such as O and Mg, represents a potential means to determine the age of quasars and probe the galaxy formation epoch. To explore how \ion{Fe}{2} emission in quasars is linked to physical conditions and abundance, we have constructed a 830-level \ion{Fe}{2} model atom and investigated through photoionization calculations how \ion{Fe}{2} emission strengths depend on non-abundance factors. We have split \ion{Fe}{2} emission into three major wavelength bands, \ion{Fe}{2} (UV), \ion{Fe}{2}(Opt1), and \ion{Fe}{2}(Opt2), and explore how the \ion{Fe}{2}(UV)/\ion{Mg}{2}, \ion{Fe}{2}(UV)/\ion{Fe}{2}(Opt1) and \ion{Fe}{2}(UV)/\ion{Fe}{2}(Opt2) emission ratios depend upon hydrogen density and ionizing flux in broad-line regions (BLR's) of quasars. Our calculations show that: 1) similar \ion{Fe}{2}(UV)/\ion{Mg}{2} ratios can exist over a wide range of physical conditions; 2) the \ion{Fe}{2}(UV)/\ion{Fe}{2}(Opt1) and \ion{Fe}{2}(UV)/\ion{Fe}{2}(Opt2) ratios serve to constrain ionizing luminosity and hydrogen density; and 3) flux measurements of \ion{Fe}{2} bands and knowledge of ionizing flux provide tools to derive distances to BLR's in quasars. To derive all BLR physical parameters with uncertainties, comparisons of our model with observations of a large quasar sample at low redshift () is desirable. The STIS and NICMOS spectrographs aboard the Hubble Space Telescope (HST) offer the best means to provide such observations.
ApJ accepted
References in corpus (9)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Preliminary Maps and Basic Results
- The Nucleosynthetic Signature of Population III
- An Empirical Ultraviolet Template for Iron Emission in Quasars as Derived from I Zw 1
- Iron Emission in the z=6.4 Quasar SDSS J114816.64+525150.3
- FeII/MgII Emission Line Ratio in High Redshift Quasars
- Iron Emission in z~6 QSOs
- High Redshift Quasars and Star Formation in the Early Universe
- Early star formation traced by the highest redshift quasars
- Revisited abundance diagnostics in quasars: Fe II/Mg II ratios
Cited by in corpus (21)
- De Re Metallica: The cosmic chemical evolution of galaxies
- Black hole mass estimates and emission-line properties of a sample of redshift z>6.5 quasars
- The Radius-Luminosity Relationship Depends on Optical Spectra in Active Galactic Nuclei
- A Systematic Analysis of Fe II Emission in Quasars: Evidence for Inflow to the Central Black Hole
- Near Infrared Spectroscopy of High Redshift Active Galactic Nuclei. II. Disappearing Narrow Line Regions and the Role of Accretion
- The Origin of Fe II Emission in AGN
- The Intrinsically X-ray Weak Quasar PHL 1811. II. Optical and UV Spectra and Analysis
- Redshift Evolution in Black Hole-Bulge Relations: Testing CIV-based Black Hole Masses
- What controls the Fe II strength in active galactic nuclei?
- The Fundamental Plane of the Broad-line Region in Active Galactic Nuclei
- The UV and optical Fe II emission lines in type 1 AGNs
- Variability of Fe II Emission Features in the Seyfert 1 Galaxy NGC 5548
- A New Iron Emission Template for Active Galactic Nuclei. I. Optical Template for the H region
- Outflows from active galactic nuclei: The BLR-NLR metallicity correlation
- Extreme quasars at high redshift
- Ultraviolet Emission-Line Correlations in Hubble/COS Spectra of Active Galactic Nuclei: Single-Epoch Black Hole Masses
- Chemical abundances along the quasar main sequence
- A Tentative Size-Luminosity Relation for the Iron Emission-Line Region in Quasars
- Radio-Loud and Radio-Quiet BAL Quasars: A Detailed Ultraviolet Comparison
- Evidence of Increased UV FeII Emission in Quasars in Candidate Overdense Regions
- Ultraviolet Fe II Emission in Fainter Quasars: Luminosity Dependences, and the Influence of Environments