High-ionization emission line ratios from quasar broad line regions: metallicity or density?
arXiv:2106.01379 · doi:10.1093/mnras/stab1610
Abstract
The flux ratios of high-ionization lines are commonly assumed to indicate the metallicity of the broad emission line region in luminous quasars. When accounting for the variation in their kinematic profiles, we show that the NV/CIV, (SiIV+OIV])/CIV and NV/Lya line ratios do not vary as a function of the quasar continuum luminosity, black hole mass, or accretion rate. Using photoionization models from CLOUDY , we further show that the observed changes in these line ratios can be explained by emission from gas with solar abundances, if the physical conditions of the emitting gas are allowed to vary over a broad range of densities and ionizing fluxes. The diversity of broad line emission in quasar spectra can be explained by a model with emission from two kinematically distinct regions, where the line ratios suggest that these regions have either very different metallicity or density. Both simplicity and current galaxy evolution models suggest that near-solar abundances, with parts of the spectrum forming in high-density clouds, are more likely. Within this paradigm, objects with stronger outflow signatures show stronger emission from gas which is denser and located closer to the ionizing source, at radii consistent with simulations of line-driven disc-winds. Studies using broad-line ratios to infer chemical enrichment histories should consider changes in density and ionizing flux before estimating metallicities.
12 pages, 7 figures, accepted for publication in MNRAS. The interactive version of Figs. 3 and 4 will be made available as supplementary online material with the journal, and will be available at https://people.ast.cam.ac.uk/~alr53/CIV_yvar/all_plots.html until August 2021
References in corpus (20)
- Array Programming with NumPy
- The 2013 Release of Cloudy
- CIV 1549 as an Eigenvector 1 Parameter for Active Galactic Nuclei
- Correcting CIV-Based Virial Black Hole Masses
- The metallicity of the most distant quasars
- MUFASA: Galaxy star formation, gas, and metal properties across cosmic time
- The KLEVER Survey: Spatially resolved metallicity maps and gradients in a sample of 1.2 < z < 2.5 lensed galaxies
- The AGN Outflow in the HDFS Target QSO J2233-606 from a High-Resolution VLT/UVES Spectrum
- State-of-the-art AGN SEDs for Photoionization Models: BLR Predictions Confront the Observations
- Stratified disc wind models for the AGN broad-line region: ultraviolet, optical and X-ray properties
- No Redshift Evolution in the Broad Line Region Metallicity up to z=7.54: Deep NIR Spectroscopy of ULAS J1342+0928
- Improved Fe II emission line models for AGN using new atomic datasets
- Galaxy And Mass Assembly (GAMA): The inferred mass--metallicity relation from z=0 to 3.5 via forensic SED fitting
- Exploring the link between C IV outflow kinematics and sublimation-temperature dust in quasars
- Chemical evolution of the Universe at 0.7 < z < 1.6 derived from abundance diagnostics of the broad-line region of quasars
- Fe III emission in quasars: evidence for a dense turbulent medium
- Space Telescope and Optical Reverberation Mapping Project. XI. Disk-wind characteristics and contributions to the very broad emission lines of NGC 5548
- Constraining UV Continuum Slopes of Active Galactic Nuclei With CLOUDY Models of Broad Line Region EUV Emission Lines
- Multi-wavelength campaign on NGC 7469 V. Analysis of the HST/COS observations: Super solar metallicity, distance, and trough variation models
- Space Telescope and Optical Reverberation Mapping Project. XIII. An Atlas of UV and X-ray Spectroscopic Signatures of theDisk Wind in NGC 5548
Cited by in corpus (13)
- Modelling type 1 quasar colours in the era of Rubin and Euclid
- Testing AGN outflow and accretion models with CIV and HeII emission line demographics in z=2 quasars
- Chemical Abundance of z~6 Quasar Broad-Line Regions in the XQR-30 Sample
- A disc wind model for blueshifts in quasar broad emission lines
- Oxygen abundances in the narrow line regions of Seyfert galaxies and the metallicity-luminosity relation
- Chemical abundances along the quasar main sequence
- The Main Sequence of quasars: the taming of the extremes
- Investigating the {Origin} of the Absorption-Line Variability in Narrow-Line Seyfert 1 Galaxy WPVS 007
- The missing FeII bump in faint JWST AGN: possible evidence for metal-poor broad-line regions at early cosmic times
- JADES -- The small blue bump in GN-z11: insights into the nuclear region of a galaxy at z=10.6
- H line shape and radius-luminosity relation in 2.5D FRADO
- pop-cosmos: Insights from generative modeling of a deep, infrared-selected galaxy population
- Investigating the origin of radio emission in candidate super-Eddington accreting black holes