Mg II and Fe II fluxes of luminous quasars at z ~ 2.7 and evaluation of the Baldwin effect in the flux-to-abundance conversion method for quasars
arXiv:2010.10548 · doi:10.3847/1538-4357/abc33b
Abstract
To investigate the chemical abundance of broad-line region clouds in quasars at high redshifts, we performed near-infrared spectroscopy of six luminous quasars at z ~ 2.7 with the WINERED spectrograph mounted on the New Technology Telescope (NTT) at the La Silla Observatory, Chile. The measured Fe II/Mg II flux ratios nearly matched with the published data for 0.7 < z < 1.6, suggesting that there is no evolution over a long period of cosmic time, which is consistent with previous studies. To derive the chemical abundances from the measured equivalent widths (EWs), their dependence on nonabundance factors must be corrected. In our previous paper, we proposed a method to derive the [Mg/Fe] abundance ratio and the [Fe/H] abundance by correcting the dependence of EW(Mg II) and EW(Fe II) on the Eddington ratio. To the best of our knowledge, that was the first report to discuss the star-formation history through a direct comparison with chemical evolution models. In the present study, we further investigated the dependence of EWs on luminosity, which is known as the Baldwin effect (BEff). Additional correction for the BEff significantly affects the derived chemical abundances for the six luminous quasars at z ~ 2.7, and the resultant abundances agree well with the prediction of chemical evolution models. Given that most distant quasars found thus far are biased toward luminous ones, the correction of the measured EWs for the BEff is crucial for extending the chemical evolution study to higher redshifts.
15 pages, 10 figures, accepted for publication in ApJ
References in corpus (16)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- A Catalog of Quasar Properties from SDSS DR7
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- The Sloan Digital Sky Survey Quasar Catalog: twelfth data release
- Physical properties of 15 quasars at
- Gemini Near-infrared Spectroscopy of Luminous z~6 Quasars: Chemical Abundances, Black Hole Masses, and MgII Absorption
- Dwarf galaxies in CDM and SIDM with baryons: observational probes of the nature of dark matter
- Fe II Emission in 14 Low-Redshift Quasars: I - Observations
- Black hole masses and enrichment of z ~ 6 SDSS quasars
- Eddington ratio governs the equivalent width of MgII emission line in active galactic nuclei
- A Sample of Quasars with Strong Nitrogen Emission Lines from the Sloan Digital Sky Survey
- The FeII/MgII flux ratio of low-luminosity quasars at z~3
- Chemical evolution of the Universe at 0.7 < z < 1.6 derived from abundance diagnostics of the broad-line region of quasars
- The Origin and Evolution of \civ Baldwin Effect in QSOs from the Sloan Digital Sky Survey
- Ultraviolet Fe II emission in z ~ 2 quasars
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