Orientation and quasar black hole mass estimation
arXiv:1509.06468 · doi:10.1093/mnras/stv2186
Abstract
We have constructed a sample of 386 radio-loud quasars with z < 0.75 from the Sloan Digital Sky Survey in order to investigate orientation effects on black hole mass estimates. Orientation is estimated using radio core dominance measurements based on FIRST survey maps. Black hole masses are estimated from virial-based scaling relationships using H-beta, and compared to the stellar velocity dispersion (sigma_*), predicted using the Full Width at Half Maximum (FWHM) of [O III] 5007, which tracks mass via the M-sigma_* relation. We find that the FWHM of Hbeta correlates significantly with radio core dominance and biases black hole mass determinations that use it, but that this is not the case for sigma_* based on [O III] 5007. The ratio of black hole masses predicted using orientation-biased and unbiased estimates, which can be determined for radio-quiet as well as radio-loud quasars, is significantly correlated with radio core dominance. Although there is significant scatter, this mass ratio calculated in this way may in fact serve as an orientation estimator. We additionally note the existence of a small population radio core-dominated quasars with extremely broad H-beta emission lines that we hypothesise may represent recent black hole mergers.
9 pages, 6 figures, accepted by MNRAS
References in corpus (8)
- A Catalog of Quasar Properties from SDSS DR7
- The diversity of quasars unified by accretion and orientation
- The black hole mass - stellar velocity dispersion relation of narrow-line Seyfert 1 galaxies
- A Unified Catalog of Radio Objects Detected by NVSS, FIRST, WENSS, GB6, and SDSS
- The Black Hole-Bulge Relationship in Luminous Broad-Line Active Galactic Nuclei and Host Galaxies
- An Improved [O III] Line Width to Stellar Velocity Dispersion Calibration: Curvature, Scatter, and Lack of Evolution in the Black-Hole Mass Versus Stellar Velocity Dispersion Relationship
- Comparing different indicators of quasar orientation
- The Intrinsic Quasar Luminosity Function: Accounting for Accretion Disk Anisotropy
Cited by in corpus (17)
- Active galactic nuclei at z~1.5: II. Black Hole Mass estimation by means of broad emission lines
- CIV Emission Line Properties and Systematic Trends in Quasar Black Hole Mass Estimates
- The Sloan Digital Sky Survey Reverberation Mapping Project: Estimating Masses of Black Holes in Quasars with Single-Epoch Spectroscopy
- Rest-frame Optical Properties of Luminous 1.5<z<3.5 Quasars: the Hbeta-[OIII] Region
- Testing Quasar Unification: Radiative Transfer in Clumpy Winds
- The Sloan Digital Sky Survey Reverberation Mapping Project: Low-Ionization Broad-Line Widths and Implications for Virial Black Hole Mass Estimation
- The Changing Look Blazar B2 1420+32
- Exploring the Diversity of Type 1 Active Galactic Nuclei Identified in SDSS-IV/SPIDERS
- The relationship between the radio core-dominance parameter and spectral index in different classes of extragalactic radio sources (III)
- A unifying evolutionary framework for infrared-selected obscured and unobscured quasar host haloes
- Broadband study of OQ 334 during its flaring state
- Properties of the narrow line Seyfert 1 galaxies revisited
- Soft gamma-ray selected giant radio galaxies: an update
- Properties of radio-loud quasars in Sloan Digital Sky Survey
- Investigating orientation effects considering angular resolution for a sample of radio-loud quasars using VLA observations
- Kinematics and Structure of Clumps in Broad-line Regions in Active Galactic Nuclei
- Orientation and accretion in a representative sample of active galactic nuclei