Revisiting the structure and spectrum of the magnetic-reconnection-heated corona in luminous AGNs
arXiv:1611.07149 · doi:10.3847/1538-4357/833/1/35
Abstract
It is believed that the hard X-ray emission in the luminous active galactic nuclei (AGNs) is from the hot corona above the cool accretion disk. However, the formation of the corona is still debated. Liu et al. investigated the spectrum of the corona heated by the reconnection of the magnetic field generated by dynamo action in the thin disk and emerging into the corona as a result of buoyancy instability. In the present paper, we improve this model to interpret the observed relation of the hard X-ray spectrum becoming softer at higher accretion rate in luminous AGNs. The magnetic field is characterized by , i.e., the ratio of the sum of gas pressure and radiation pressure to magnetic pressure in the disk (). Besides, both the intrinsic disk photons and reprocessed photons by the disk are included as the seed photons for inverse Compton scattering. These improvements are crucial for investigating the effect of magnetic field on the accretion disk-corona when it is not clear whether the radiation pressure or gas pressure dominates in thin disk. We change the value of in order to constrain the magnetic field in the accretion disk. We find that the energy fraction released in the corona () gradually increases with the decrease of for the same accretion rate. When decreases to less than 50, the structure and spectrum of the disk-corona is independent on accretion rate, which is similar to the hard spectrum found in Liu et al.(2003). Comparing with the observational results of the hard X-ray bolometric correction factor in a sample of luminous AGNs, we suggest that the value of is about 100-200 for and the energy fraction should be larger than for hard X-ray emission.
21 pages, 6 figures. ApJ accepted
References in corpus (12)
- Piecing Together the X-ray Background: Bolometric Corrections for Active Galactic Nuclei
- Simultaneous X-ray/optical/UV snapshots of active galactic nuclei from XMM-Newton: spectral energy distributions for the reverberation mapped sample
- A Population of Radio-loud Narrow Line Seyfert 1 Galaxies with Blazar-like Properties?
- Correlation between the photon index and X-ray luminosity of black hole X-ray binaries and active galactic nuclei: observations and interpretation
- The Existence of Inner Cool Disks in the Low Hard State of Accreting Black Holes
- An accretion disc-corona model for X-ray spectra of active galactic nuclei
- Empirical relation between angular momentum transport and thermal-to-magnetic pressure ratio in shearing box simulations
- Thermal stability of thin disk with magnetically driven winds
- Jet Properties of GeV-Selected Radio-Loud Narrow-Line Seyfert 1 Galaxies and Possible Connection to Their Disk and Corona
- A disc corona-jet model for the radio/X-ray correlation in black hole X-ray binaries
- The Accretion Geometry in Radio-Loud Active Galaxies
- Disk-Evaporation Fed Corona: Structure and Evaporation Feature with Magnetic Field
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- Analytical Model of Disk Evaporation and State Transitions in Accreting Black Holes
- Episodic Jets from Black Hole Accretion Disks
- The dynamical structure of the outflows driven by a large-scale magnetic field
- The origin of X-ray emission in 3CRR sources: hints from mid-infrared Spitzer observations
- The physical relation between disc and coronal emission in quasars