Observations of OI and CaII Emission Lines in Quasars: Implications for the Site of FeII Line Emission
arXiv:astro-ph/0703659 · doi:10.1086/518399
Abstract
We present results of the near-infrared (IR) spectroscopy of six quasars whose redshifts range from 0.158 to 1.084. Combined with the satellite ultraviolet data, the relative line strengths of OI 1304, OI 8446, OI 11287, and the near-IR CaII triplet are given. In addition, the corresponding OI line strengths measured in normal Seyfert 1s and narrow-line Seyfert 1s are collected from the literature. These lines are thought to emerge from the same gas as do the FeII lines, so they are good tracers of the FeII emission region within a broad emission line region (BELR) in active galactic nuclei (AGNs). In order to reveal the physical condition within the relevant emission region, we performed photoionized model calculations and compared them to the observations. It suggests that a rather dense gas with density nH ~ 10^(11.5) cm-3 is present at an outer portion of the BELR, illuminated by the ionizing radiation corresponding to an ionization parameter U ~ 10^(-2.5) and is primarily responsible for the observed OI, CaII, and FeII lines, based on the resemblance of their profiles. The three OI lines are proven to be formed through Ly beta fluorescence and collisional excitation. We also show that the lambda1304 bump typically observed in AGN spectra consists of the comparable contributions of OI and SiII multiplets, and we discuss the origin of such a strong SiII emission. The results are interpreted in the context of the locally optimally emitting cloud (LOC) scenario to find the plausible gas distribution within the BELR as a function of distance from the central source and density.
Accepted for publication in ApJ; some rewordings made
References in corpus (3)
Cited by in corpus (20)
- The Near-Infrared Broad Emission Line Region of Active Galactic Nuclei -- I. The Observations
- No significant evolution of relations between Black hole mass and Galaxy total stellar mass up to z~2.5
- A spectroscopic analysis of a sample of narrow-line Seyfert 1 galaxies selected from the Sloan Digital Sky Survey
- pyFIT3D and pyPipe3D -- The new version of the Integral Field Spectroscopy data analysis pipeline
- What does Civλ1549 tell us about the physical driver of the Eigenvector Quasar Sequence?
- High metal content of highly accreting quasars
- OI and CaII observations in intermediate redshift quasars
- The Close AGN Reference Survey (CARS): IFU survey data and the BH mass dependence of long-term AGN variability
- Chemical evolution of the Universe at 0.7 < z < 1.6 derived from abundance diagnostics of the broad-line region of quasars
- Panchromatic Properties of the Extreme FeII Emitter PHL 1092
- High Metal Content of Highly Accreting Quasars: Analysis of an Extended Sample
- The transient event in NGC 1566 from 2017 to 2019 -- I. An eccentric accretion disk and a turbulent, disk-dominated broad-line region unveiled by double-peaked Ca II and O I lines
- Estimating reddening of the continuum and broad-line region of active galactic nuclei: the mean reddening of NGC 5548 and the size of the accretion disc
- The Close AGN Reference Survey (CARS): Tracing the circumnuclear star formation in the super-Eddington NLS1 Mrk 1044
- SHELLQs. Bridging the Gap: JWST Unveils Obscured Quasars in the Most Luminous Galaxies at z > 6
- Ultraviolet Fe II emission in z ~ 2 quasars
- HE0359-3959: an extremely radiating quasar
- Identifying four sources in the Galactic Plane via VLT/optical and -/X-ray spectroscopy
- Double-peaked Ca II traces a relativistic broad-line region disk in NGC 4593
- MARTA: The connection between chemical enrichment, feedback, and dust in a Wolf-Rayet galaxy at z2