Hadronic models of blazars require a change of the accretion paradigm
arXiv:1501.06124 · doi:10.1093/mnrasl/slv039
Abstract
We study hadronic models of broad-band emission of jets in radio-loud active galactic nuclei, and their implications for the accretion in those sources. We show that the models that account for broad-band spectra of blazars emitting in the GeV range in the sample of Boettcher et al. have highly super-Eddington jet powers. Furthermore, the ratio of the jet power to the radiative luminosity of the accretion disc is on average and can be as high as . We then show that the measurements of the radio core shift for the sample imply low magnetic fluxes threading the black hole, which rules out the Blandford-Znajek mechanism to produce powerful jets. These results require that the accretion rate necessary to power the modelled jets is extremely high, and the average radiative accretion efficiency is . Thus, if the hadronic model is correct, the currently prevailing picture of accretion in AGNs needs to be significantly revised. Also, the obtained accretion mode cannot be dominant during the lifetimes of the sources, as the modelled very high accretion rates would result in too rapid growth of the central supermassive black holes. Finally, the extreme jet powers in the hadronic model are in conflict with the estimates of the jet power by other methods.
MNRAS, in press
References in corpus (8)
- The power of relativistic jets is larger than the luminosity of their accretion disks
- The Luminosity Function of X-ray Selected Active Galactic Nuclei: Evolution of Supermassive Black Holes at High Redshift
- A hadronic origin for ultra-high-frequency-peaked BL Lac objects
- A Universal Scaling for the Energetics of Relativistic Jets From Black Hole Systems
- Measuring the kinetic power of AGN in the radio mode
- The cosmic growth of the active black hole population at 1<z<2 in zCOSMOS, VVDS and SDSS
- High-Energy Aspects of Astrophysical Jets
- The minimum jet power and equipartition
Cited by in corpus (41)
- Rapid Variability of Blazar 3C 279 during Flaring States in 2013-2014 with Joint Fermi-LAT, NuSTAR, Swift, and Ground-Based Multi-wavelength Observations
- Relativistic Jets in Active Galactic Nuclei und Microquasars
- Leptonic and Hadronic Radiative Processes in Supermassive-Black-Hole Jets
- Constraints on the emission region of 3C 279 during strong flares in 2014 and 2015 through VHE gamma-ray observations with H.E.S.S
- X-ray Polarization Observations of BL Lacertae
- Comprehensive Multimessenger Modeling of the Extreme Blazar 3HSP J095507.9+355101 and Predictions for IceCube
- Proton Synchrotron -rays and the Energy Crisis in Blazars
- Radiation and Polarization Signatures of 3D Multi-zone Time-dependent Hadronic Blazar Model
- Investigating the multiwavelength behaviour of the flat spectrum radio quasar CTA 102 during 2013-2017
- Modeling the Spectral Energy Distribution of the radio galaxy IC310
- Relevance of jet magnetic field structure for blazar axionlike particle searches
- An intermittent extreme BL Lac: MWL study of 1ES 2344+514 in an enhanced state
- A hadronic minute-scale GeV flare from quasar 3C 279?
- H.E.S.S. detection of very-high-energy gamma-ray emission from the quasar PKS 0736+017
- Constraints on axionlike particles from a combined analysis of three flaring flat-spectrum radio quasars
- 3C 279 in Outburst in June 2015: A Broadband-SED Study Based on the INTEGRAL Detection
- Multi-wavelength Temporal Variability of the Blazar 3C 454.3 during 2014 Activity Phase
- Hadronuclear interactions in the jet of low TeV luminosity AGN: Implications for the low-state very-high-energy gamma-ray emission
- Blazars at Very High Energies: Emission Modelling
- Luminous and high-frequency peaked blazars: the origin of the -ray emission from PKS 1424+240
- A Multi-wavelength View of OJ 287 Activity in 2015-2017: Implications of Spectral Changes on Central-engine Models and MeV-GeV Emission Mechanism
- The VHE SED modelling of Markarian 501 in 2009
- ExHaLe-jet: An extended hadro-leptonic jet model for blazars. I. Code description and initial results
- Can one-zone hadronuclear model explain the hard-TeV spectrum of BL Lac objects?
- Weibel instability in hot plasma flows with production of gamma-rays and electron-positron pairs
- A Multi-Wavelength Study of Multiple Spectral Component Jets in AGN: Testing the IC/CMB Model for the Large-Scale-Jet X-ray Emission
- Revisiting the proton synchrotron radiation in blazar jets: Possible contributions from X-ray to -ray bands
- Circumnuclear Dust in AP Librae and the source of its VHE emission
- Multiband Observations of the Quasar PKS 2326-502 during Active and Quiescent Gamma-Ray States in 2010-2012
- A closer look at the electromagnetic signatures of Bethe-Heitler pair production process in blazars
- The prototype X-ray binary GX 339-4: using TeV gamma-rays to assess LMXBs as Galactic cosmic ray accelerators
- TeV and keV-MeV Excesses as Probes for Hadronic Process in BL Lacertaes
- Relevance of photon-photon dispersion within the jet for blazar axionlike particle searches
- Multi-messenger emission from magnetic reconnection in blazar jets: the case of TXS 0506+056
- Exploring the role of composition and mass-loading on the properties of hadronic jets
- Estimating the Jet Power from Broadband SED modeling of Mkn 501 for different particle distributions
- Convex X-ray Spectra of PKS 2155-304 and Constraints on the Minimum Electron Energy
- Multi-wavelength study of OT 081: broadband modelling of a transitional blazar
- The ablation of gas clouds by blazar jets
- Time-dependent modelling of short-term variability in the TeV-blazar VER J0521+211 during the major flare in 2020
- Impact of model parameter degeneracy on leptonic radiation models. The case of blazar multi-wavelength spectra