On the Origin of Ultraviolet Emission and the Accretion Model of Low-luminosity AGNs
arXiv:1011.1962 · doi:10.1088/0004-637X/726/2/87
Abstract
Low-luminosity active galactic nuclei (LLAGNs) are generally believed to be powered by an inner radiatively inefficient, advection-dominated accretion flow (ADAF), an outer truncated thin disk, and a jet. Maoz (2007) recently challenged this picture based on the observation that the strength of ultraviolet emission relative to the X-ray and radio bands does not depart from empirical trends defined by more luminous sources. He advocates that AGNs across all luminosities have essentially the same accretion and radiative processes, which in luminous sources are described by a standard optically thick, geometrically thin disk. We calculate ADAF models and demonstrate that they can successfully fit the observed spectral energy distributions of the LLAGNs in Maoz's sample. Our model naturally accommodates the radio and X-ray emission, and the ultraviolet flux is well explained by a combination of the first-order Compton scattering in the ADAF, synchrotron emission in the jet, and black body emission in the truncated thin disk. It is premature to dismiss the ADAF model for LLAGNs. The UV data can be fit equally well using a standard thin disk, but an additional corona and jet would be required to account for the X-ray and radio emission. We argue that there are strong theoretical reasons to prefer the ADAF model over the thin disk scenario. We discuss testable predictions that can potentially discriminate between the two accretion models.
20 pages, 3 figures; ApJ in press
References in corpus (8)
- Modelling the behaviour of accretion flows in X-ray binaries
- The X-ray-to-Optical Properties of Optically-Selected Active Galaxies Over Wide Luminosity and Redshift Ranges
- Radio-Loudness of Active Galactic Nuclei: Observational Facts and Theoretical Implications
- Radiatively Inefficient Accretion in Nearby Galaxies
- Low-Luminosity Active Galactic Nuclei: Are They UV-Faint and Radio Loud?
- Revisiting the "Fundamental Plane" of Black Hole Activity at Extremely Low Luminosities
- Results from an extensive simultaneous broadband campaign on the underluminous active nucleus M81*: further evidence for mass-scaling accretion in black holes
- Accretion models of Sgr A*
Cited by in corpus (47)
- Hot Accretion Flows Around Black Holes
- First M87 Event Horizon Telescope Results. V. Physical Origin of the Asymmetric Ring
- Spectral Models for Low-luminosity Active Galactic Nuclei in LINERs: The Role of Advection-dominated Accretion and Jets
- The central parsecs of M87: jet emission and an elusive accretion disc
- The X-ray Spectral Evolution of Galactic Black Hole X-ray Binaries Toward Quiescence
- Correlation between the photon index and X-ray luminosity of black hole X-ray binaries and active galactic nuclei: observations and interpretation
- Magnetic flux paradigm for radio-loudness of AGN
- The Nuclear Near-Infrared Spectral Properties of Nearby Galaxies
- Evidence of parsec-scale jets in Low-luminosity Active Galactic Nuclei
- AGN feedback in an isolated elliptical galaxy: the effect of strong radiative feedback in the kinetic mode
- Study of LINER sources with broad H(alpha) emission. Spectral energy distribution and multiwavelength correlations
- A Physical Link Between Jet Formation and Hot Plasma in Active Galactic Nuclei
- Interpreting the radio/X-ray correlation of black hole sources based on the accretion-jet model
- Disk corona interaction: mechanism for the disk truncation and spectrum change in low luminosity AGN
- Possible Origin of Radio Emission from Nonthermal Electrons in Hot Accretion Flows for Low-Luminosity Active Galactic Nuclei
- Gamma-ray observations of low-luminosity active galactic nuclei
- The role of the accretion disk, dust, and jets in the IR emission of low-luminosity AGN
- A unified accretion disc model for supermassive black holes in galaxy formation simulations: method and implementation
- Exploring the accretion model of M87 and 3C 84 with the Faraday rotation measure observations
- An accretion-jet model for M87: interpreting the spectral energy distribution and Faraday rotation measure
- The Dynamics of Truncated Black Hole Accretion Disks II: Magnetohydrodynamic Case
- Diffraction-limited Subaru imaging of M82: sharp mid-infrared view of the starburst core
- Nonthermal processes in hot accretion flows onto supermassive black holes: An inhomogeneous model
- Jets and the Accretion Flow in Low Luminosity Black Holes
- The SED of Low-Luminosity AGNs at high-spatial resolution
- Compact jets dominate the continuum emission in low-luminosity active galactic nuclei
- The multiwavelength spectrum of NGC 3115: Hot accretion flow properties
- A Compact Jet at the Infrared Heart of the Prototypical Low-Luminosity AGN in NGC 1052
- Warping of accretion disk and launching of jet by a spinning black hole in NGC 4258
- Relationship Between the Kinetic Power and Bolometric Luminosity of Jets: limitation from black hole X-ray binaries, active galactic nuclei, and gamma-ray bursts
- Nuclear Radio Jet from a Low-Luminosity Active Galactic Nucleus in NGC 4258
- The possible submillimeter bump and accretion-jet in the central supermassive black hole of NGC 4993
- Whispering in the dark: Faint X-ray emission from black holes with OB star companions
- A lower limit to the accretion disc radius in the low-luminosity AGN NGC 1052 derived from high-angular resolution data
- The Dynamics of Truncated Black Hole Accretion Disks I: Viscous, Hydrodynamic Case
- Photoionization Modelling of the Giant Broad-Line Region in NGC 3998
- Accretion and jets in a low luminosity AGN: the nucleus of NGC 1052
- AGN types and unification model
- A strong negative correlation between radio loudness and optical-to-X-ray spectral index in low-luminosity AGNs
- Broadband Modeling of Low Luminosity Active Galactic Nuclei Detected in Gamma Rays
- A model for the radio/X-ray correlation in three neutron star low-mass X-ray binaries 4U 1728-34, Aql X-1 and EXO 1745-248
- Central accumulation of magnetic flux in massive Seyfert galaxies as a possible engine to trigger ultrahigh energy cosmic rays
- Angular momentum transport and thermal stabilization of optically thin, advective accretion flows through large-scale magnetic fields
- Jet-dominated quiescent state in black hole X-ray binaries: the cases of A0620--00 and XTE J1118+480
- Modeling the Spectrum of IGR J17177-3656
- Black holes: accretion processes in X-ray binaries
- Millimeter-VLBI observations of low-luminosity active galactic nuclei with source-frequency phase-referencing