Probing Quasar Viewing Angle with the Variability Structure Function
arXiv:2306.05508 · doi:10.1093/mnras/stad1688
Abstract
Given the anisotropic emission from quasar accretion discs, their viewing angle affects estimates of the quasar luminosity, black-hole mass and Eddington ratio. Discs appear overluminous when viewed pole-on and underluminous when viewed at high inclination. In radio-quiet quasars, the viewing angle is usually unknown, although spectroscopic indicators have been proposed. Here, we use a recently discovered universality in the variability structure function (SF) of quasar light curves (LCs), where all quasars show the same SF when clocks run in units of orbital timescale. As an offset from the mean relation can be caused by incorrect orbital timescales and thus incorrect luminosities, we correlate these offsets with suggested inclination indicators. We derive SFs from NASA/ATLAS LCs spanning years of observation, using a sample of 183 luminous quasars with measured H lines as well as 753 quasars with CIV and MgII lines. Starting from the proposed orientation indicators, we expect quasars with narrower H lines and with more blueshifted CIV lines to be viewed more pole-on and thus appear overluminous. In contrast, our SF analysis finds that presumed pole-on discs appear underluminous, consistently for both line indicators. We discuss possible explanations for the behaviour of quasars with highly blueshifted CIV lines irrespective of inclination angle, including dusty outflows that might render the accretion disc underluminous and flatter disc temperature profiles with longer orbital timescales than in thin-disc models but reach no satisfying conclusion.
15 pages, 10 figures, Accepted for publication in MNRAS
References in corpus (21)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- Observational constraints on Cosmic Reionization
- Active Galactic Nuclei: what's in a name?
- The diversity of quasars unified by accretion and orientation
- Absorption Properties and Evolution of Active Galactic Nuclei
- Pōniuā'ena: A Luminous Quasar Hosting a 1.5 Billion Solar Mass Black Hole
- The Radio-Loud Fraction of Quasars is a Strong Function of Redshift and Optical Luminosity
- The Half Million Quasars (HMQ) Catalogue
- The effect of nuclear gas distribution on the mass determination of supermassive black holes
- Constraining the radio-loud fraction of quasars at z>5.5
- Gravitationally lensed quasars in Gaia -- IV. 150 new lenses, quasar pairs, and projected quasars
- Examining AGN UV/optical Variability Beyond the Simple Damped Random Walk
- Probing the Physics of Narrow Line Regions in Active Galaxies IV: Full data release of The Siding Spring Southern Seyfert Spectroscopic Snapshot Survey (S7)
- Testing AGN outflow and accretion models with CIV and HeII emission line demographics in z=2 quasars
- Exploring the link between C IV outflow kinematics and sublimation-temperature dust in quasars
- The Kinematics of Quasar Broad Emission Line Regions Using a Disk-wind Model
- Universality in the Random Walk Structure Function of Luminous Quasi-Stellar Objects
- AllBRICQS: the All-sky BRIght, Complete Quasar Survey
- Characterising SMSS J2157--3602, the most luminous known quasar, with accretion disc models
- Determining Quasar Orientation