The effect of nuclear gas distribution on the mass determination of supermassive black holes
arXiv:1709.05345 · doi:10.1038/s41550-017-0305-z
Abstract
Supermassive black holes reside in the nuclei of most galaxies. Accurately determining their mass is key to understand how the population evolves over time and how the black holes relate to their host galaxies. Beyond the local universe, the mass is commonly estimated assuming virialized motion of gas in the close vicinity to the active black holes, traced through broad emission lines. However, this procedure has uncertainties associated with the unknown distribution of the gas clouds. Here we show that the comparison of black hole masses derived from the properties of the central accretion disc with the virial mass estimate provides a correcting factor, for the virial mass estimations, that is inversely proportional to the observed width of the broad emission lines. Our results suggest that line-of-sight inclination of gas in a planar distribution can account for this effect. However, radiation pressure effects on the distribution of gas can also reproduce our findings. Regardless of the physical origin, our findings contribute to mitigate the uncertainties in current black hole mass estimations and, in turn, will help to further understand the evolution of distant supermassive black holes and their host galaxies.
17 pages, 10 figures and 2 tables. Published in Nature Astronomy. November 20 (2017)
References in corpus (12)
- A luminous quasar at a redshift of z = 7.085
- An ultra-luminous quasar with a twelve-billion-solar-mass black hole at redshift 6.30
- The diversity of quasars unified by accretion and orientation
- The AGN Black Hole Mass Database
- The effect of radiation pressure on virial black hole mass estimates and the case of Narrow Line Seyfert 1 galaxies
- The black hole mass - stellar velocity dispersion relation of narrow-line Seyfert 1 galaxies
- Are the black hole masses in Narrow Line Seyfert 1 galaxies actually small?
- Active galactic nuclei at z ~ 1.5: I. Spectral energy distribution and accretion discs
- On the geometry of broad emission region in quasars
- Consistency of the black hole mass determination in AGN from the reverberation and the X-ray excess variance method
- Test of the Formation mechanism of the Broad Line Region in Active Galactic Nuclei
- Polarization in lines - a new method for measuring black hole masses in active galaxies
Cited by in corpus (51)
- The Radius-Luminosity Relationship Depends on Optical Spectra in Active Galactic Nuclei
- Spiral morphology in an intensely star-forming disk galaxy more than 12 billion years ago
- BASS XXV: DR2 Broad-line Based Black Hole Mass Estimates and Biases from Obscuration
- On the multi-wavelength variability of Mrk 110: Two components acting at different timescales
- LLAMA: The - Relation of the most luminous local AGNs
- Size matters: are we witnessing super-Eddington accretion in high-redshift black holes from JWST?
- Time-delay measurement of MgII broad line response for the highly-accreting quasar HE 0413-4031: Implications for the MgII-based radius-luminosity relation
- Accretion Disk Size Measurements of Active Galactic Nuclei Monitored by the Zwicky Transient Facility
- CLOUDY view of the warm corona
- Calibration of the virial factor in supermassive black hole masses of reverberation-mapped AGNs
- Black hole mass estimates in quasars - A comparative analysis of high- and low-ionization lines
- Velocity-resolved Reverberation Mapping of Changing-look Active Galactic Nucleus NGC~4151 During Outburst Stage: Evidence for Kinematics Evolution of Broad-line Region
- BASS XXIX: The near-infrared view of the BLR: the effects of obscuration in BLR characterisation
- Standardizing reverberation-measured C IV time-lag quasars, and using them with standardized Mg II quasars to constrain cosmological parameters
- Black hole mass measurement using ALMA observations of [CI] and CO emissions in the Seyfert 1 galaxy NGC7469
- BASS XXVIII: Near-infrared Data Release 2, High-Ionization and Broad Lines in Active Galactic Nuclei
- Broad-line Region of the Quasar PG 2130+099 from a Two-Year Reverberation Mapping Campaign with High Cadence
- Consistency study of high- and low-accreting Mg ii quasars: No significant effect of the Fe ii to Mg ii flux ratio on the radius-luminosity relation dispersion
- An extended size-luminosity relation for the reverberation-mapped AGNs: the role of the accretion rate
- Estimating AGN Black Hole Masses via Continuum Reverberation Mapping in the Era of LSST
- The accretion of a solar mass per day by a 17-billion solar mass black hole
- Systematically smaller single-epoch quasar black hole masses using a radius-luminosity relationship corrected for spectral bias
- The intermediate-ionization lines as virial broadening estimators for Population A quasars
- The supermassive black hole masses of reverberation-mapped active galactic nuclei
- Chemical abundances along the quasar main sequence
- Estimating supermassive black hole masses in AGNs using polarization of broad MgII, H and H lines
- The galaxy's gas content regulated by the dark matter halo mass results in a super-linear M-M relation
- Estimation of the size and structure of the broad line region using Bayesian approach
- Wavelength-resolved reverberation mapping of intermediate redshift quasars HE 0413-4031 and HE 0435-4312: Dissecting Mg II, optical Fe II, and UV Fe II emission regions
- Wavelength-resolved Reverberation Mapping of quasar CTSC30.10: Dissecting MgII and FeII emission regions
- Linear Spectropolarimetric Analysis of Fairall 9 with VLT/FORS2
- Statistical analysis of AlIII 1860 and CIII] 1909 emission lines as virial black hole mass estimators in quasars
- Black hole virial masses from single-epoch photometry: the miniJPAS test case
- Characterising SMSS J2157--3602, the most luminous known quasar, with accretion disc models
- Gemini Near Infrared Spectrograph - Distant Quasar Survey: Prescriptions for Calibrating UV-Based Estimates of Supermassive Black Hole Masses in High-Redshift Quasars
- Testing Einstein's Equivalence Principle and its Cosmological Evolution from Quasar Gravitational Redshifts
- A Newborn AGN in a Starforming Galaxy
- Velocity-Resolved Ionization Mapping of Broad Line Region. I. Insights into Diverse Geometry and Kinematics
- The -based dimensionless accretion rate and its connection with the corona for AGN
- The Wind Dynamics of Super-Eddington Sources in FRADO
- Measuring the Virial Factor in SDSS DR7 AGNs with Redshifted H and H Broad Emission Lines
- Spectral Energy Distribution profiles from AGN accretion disc in multi-gap setup
- A Broker Integrated Algorithm for Gravitational Wave - Electromagnetic Counterpart Searches in O4a and O4b Runs
- The Quasar 3C 47: Extreme Population B Jetted Source With Double-peaked Profile
- Amoeba: An AGN Model of Optical Emissions Beyond steady-state Accretion discs
- Deep absorption in SDSS J110511.15+530806.5
- Investigating the origin of radio emission in candidate super-Eddington accreting black holes
- Past, present and Future of the Scaling Relations of Galaxies and Active Galactic Nuclei
- Relativistic Jets in Gamma-Ray-Emitting Narrow-Line Seyfert 1 Galaxies
- Probing Quasar Viewing Angle with the Variability Structure Function
- Reverberation Mapping of Two Luminous Quasars: the Broad-line Region Structure and Black Hole Mass