Active galactic nuclei at z ~ 1.5: I. Spectral energy distribution and accretion discs
arXiv:1410.8137 · doi:10.1093/mnras/stu2266
Abstract
The physics of active super massive black holes (BHs) is governed by their mass (M_BH), spin (a*) and accretion rate (). This work is the first in a series of papers with the aim of testing how these parameters determine the observable attributes of active galactic nuclei (AGN). We have selected a sample in a narrow redshift range, centered on z~1.55, that covers a wide range in M_BH and , and are observing them with X-shooter, covering rest wavelengths ~1200-9800 Å. The current work covers 30 such objects and focuses on the origin of the AGN spectral energy distribution (SED). After estimating M_BH and based on each observed SED, we use thin AD models and a Bayesian analysis to fit the observed SEDs in our sample. We are able to fit 22/30 of the SEDs. Out of the remaining 8 SEDs, 3 can be fit by the thin AD model by correcting the observed SED for reddening within the host galaxy and 4 can be fit by adding a disc wind to the model. In four of these 8 sources, Milky Way-type extinction, with the strong 2175Å feature, provides the best reddening correction. The distribution in spin parameter covers the entire range, from -1 to 0.998, and the most massive BHs have spin parameters greater than 0.7. This is consistent with the "spin-up" model of BH evolution. Altogether, these results indicate that thin ADs are indeed the main power houses of AGN, and earlier claims to the contrary are likely affected by variability and a limited observed wavelength range.
23 pages, 14 figures, accepted for publication in MNRAS
References in corpus (5)
- The Evolution of Black Hole Mass and Spin in Active Galactic Nuclei
- HST-COS Observations of AGN. II. Extended Survey of Ultraviolet Composite Spectra from 159 Active Galactic Nuclei
- The UV Continuum of Quasars: Models and SDSS Spectral Slopes
- The Most Massive Active Black-Holes at z~1.5-3.5 Have High Spins and Radiative Efficiencies
- Reflection From the Strong Gravity Regime in a z=0.658 Gravitationally Lensed-Quasar
Cited by in corpus (39)
- Active Galactic Nuclei: what's in a name?
- The first ultraviolet quasar stacked spectrum at z=2.4 from WFC3
- Magnetohydrodynamic Simulations of Active Galactic Nucleus Disks and Jets
- A possible mechanism for multiple changing look phenomenon in Active Galactic Nuclei
- The effect of nuclear gas distribution on the mass determination of supermassive black holes
- XQ-100: A legacy survey of one hundred 3.5 < z < 4.5 quasars observed with VLT/XSHOOTER
- Mining for Dust in Type 1 Quasars
- Probing black hole accretion tracks, scaling relations and radiative efficiencies from stacked X-ray active galactic nuclei
- The SOUX AGN sample: Optical/UV/X-ray SEDs and the nature of the disc
- Fundamental differences in the properties of red and blue quasars: measuring the reddening and accretion properties with X-shooter
- Optical continuum photometric reverberation mapping of the Seyfert-1 galaxy Mrk509
- Reaching the Peak of the quasar spectral energy distribution - II. Exploring the accretion disc, dusty torus and host galaxy
- Accretion disks, quasars and cosmology: meandering towards understanding
- The accretion of a solar mass per day by a 17-billion solar mass black hole
- Quasar emission lines as probes of orientation: implications for disc wind geometries and unification
- High-redshift quasars along the Main Sequence
- A Comparison of Two Methods for Estimating Black Hole Spin in Active Galactic Nuclei
- Reaching the Peak of the Quasar Spectral Energy Distribution I: Observations and Models
- X-ray illuminated accretion discs and quasar microlensing disc sizes
- The relativistic jet of the -ray emitting narrow-line Seyfert 1 galaxy PKS J12220413
- A catalog of optical to X-ray spectral energy distributions of z~2 quasars observed with Swift. I: First results
- Searching for Super-Eddington Quasars using a Photon Trapping Accretion Disc Model
- Individual Estimates of the Virial Factor in 10 Quasars: Implications on the Kinematics of the Broad Line Region
- The physical driver of the optical Eigenvector 1 in Quasar Main Sequence
- Testing the Completeness of the SDSS Colour Selection for Ultramassive, Slowly Spinning Black Holes
- Constraining Quasar Relativistic Reflection Regions and Spins with Microlensing
- Testing Einstein's Equivalence Principle and its Cosmological Evolution from Quasar Gravitational Redshifts
- Characterising SMSS J2157--3602, the most luminous known quasar, with accretion disc models
- Modeling the unresolved NIR-MIR SEDs of local () QSOs
- Revealing the structure of the lensed quasar Q 0957+561: III. SMBH mass via gravitational redshift
- Spectral Energy Distribution profiles from AGN accretion disc in multi-gap setup
- Relativistic Reflection Modeling in AGN and Related Variability from PCA: A Brief Review
- A Novel Test of Quasar Orientation
- The X-ray weakness of Little Red Dots and JWST-selected AGN: comparison with local AGN in different accretion regimes
- The broad band SEDs of four 'hypervariable' AGN
- A New Member of the Fast and Furious Family: A Relativistic and Time-Variable UV Outflow in a Luminous Quasar
- The extreme properties of the nearby hyper-Eddington accreting Active Galactic Nucleus in IRAS 04416+1215
- The Contribution of AGN Accretion Disks to Hydrogen Reionization
- Relativistic Jets in Gamma-Ray-Emitting Narrow-Line Seyfert 1 Galaxies