Jets, black holes and disks in blazars
arXiv:1309.4772 · doi:10.1051/epjconf/20136105001
Abstract
The Fermi and Swift satellites, together with ground based Cherenkov telescopes, has greatly improved our knowledge of blazars, namely Flat Spectrum Radio Quasars and BL Lac objects, since all but the most powerful emit most of their electro-magnetic output at gamma-ray energies, while the very powerful blazars emit mostly in the hard X-ray region of the spectrum. Often they show coordinated variability at different frequencies, suggesting that in these cases the same population of electrons is at work, in a single zone of the jet. The location of this region along the jet is a matter of debate. The jet power correlates with the mass accretion rate, with jets existing at all values of disk luminosities, measured in Eddington units, sampled so far. The most powerful blazars show clear evidence of the emission from their disks, and this has revived methods of finding the black hole mass and accretion rate by modelling a disk spectrum to the data. Being so luminous, blazars can be detected also at very high redshift, and therefore are a useful tool to explore the far universe. One interesting line of research concerns how heavy are their black holes at high redshifts. If we associate the presence of a relativistic jet with a fastly spinning black hole, then we naively expect that the accretion efficiency is larger than for non-spinning holes. As a consequence, the black hole mass in jetted systems should grow at a slower rate. In turn, this would imply that, at high redshifts, the heaviest black holes should be in radio-quiet quasars. We instead have evidences of the opposite, challenging our simple ideas of how a black hole grows.
12 pages, 11 figures. Invited review at the meeting "The Innermost Regions of Relativistic Jets and Their Magnetic Fields", Granada, Spain
References in corpus (28)
- An Observational Determination of the Bolometric Quasar Luminosity Function
- The Low-Luminosity End of the Radius-Luminosity Relationship for Active Galactic Nuclei
- Leptonic and Hadronic Modeling of Fermi-Detected Blazars
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- Fast TeV variability in blazars: jets in a jet
- The power of blazar jets
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- Bright AGN Source List from the First Three Months of the Fermi Large Area Telescope All-Sky Survey
- MAGIC discovery of VHE Emission from the FSRQ PKS 1222+21
- Teraelectronvolt Astronomy
- The effect of radiation pressure on virial black hole mass estimates and the case of Narrow Line Seyfert 1 galaxies
- Implications of very rapid TeV variability in blazars
- GeV breaks in blazars as a result of gamma-ray absorption within the broad-line region
- A Tight Connection between Gamma-Ray Outbursts and Parsec-Scale Jet Activity in the Quasar 3C 454.3
- Black hole mass estimate for a sample of radio-loud narrow-line Seyfert 1 galaxies
- Dynamics and High Energy Emission of the Flaring HST-1 Knot in the M 87 Jet
- Are the black hole masses in Narrow Line Seyfert 1 galaxies actually small?
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- The Blazar Sequence: Validity and Predictions
- Orientation dependency of broad-line widths in quasars and consequences for black-hole mass estimation
- Did Swift measure GRB prompt emission radii?
- Intrinsic absorption in 3C 279 at GeV-TeV energies and consequences for estimates of the EBL
- The red blazar PMN J2345-1555 becomes blue
- A structure and energy dissipation efficiency of relativistic reconfinement shocks
- TeV variability in blazars: how fast can it be?
- The Optical-Radio Mapping: the kinetic efficiency of Radio-Loud AGNs
- The Spectral Energy Distribution of the High-Z Blazar Q0906+693
- Synchrotron and inverse-Compton emission from blazar jets - III. Compton-dominant blazars
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- Blazar Flaring Patterns (B-FlaP): Classifying Blazar Candidates of Uncertain type in the third Fermi-LAT catalog by Artificial Neural Networks
- A Consolidated Framework of the Color Variability in Blazars: Long-Term Optical/Near-Infrared Observations of 3C 279
- Expected signatures from hadronic emission processes in the TeV spectra of BL Lac objects
- Long term variability and correlation study of the blazar 3C 454.3 in radio, NIR and optical wavebands
- The TANAMI Multiwavelength Program: Dynamic SEDs of Southern Blazars
- Classification of Blazar Candidates of Uncertain Type from the Fermi LAT 8-Year Source Catalog with an Artificial Neural Network
- Optical monitoring in southern blazars. Analysis of variability and spectral colour behaviours
- On the origin of multifrequency temporal and spectral variability in Ton 599