Magnetic Fields of Agns and Standard Accretion Disk Model: Testing by Optical Polarimetry
arXiv:0909.1207 · doi:10.1051/0004-6361/200810892
Abstract
We have developed the method that allows us to estimate the magnetic field strength at the horizon of a supermassive black hole (SMBH) through the observed polarization of optical emission of the accreting disk surrounding SMBH. The known asymptotic formulae for the Stokes parameters of outgoing radiation are azimuthal averaged, which corresponds to an observation of the disk as a whole. We consider two models of the embedding 3D-magnetic field, the regular field, and the regular field with an additional chaotic (turbulent) component. It is shown that the second model is preferable for estimating the magnetic field in NGC 4258. For estimations we used the standard accretion disk model assuming that the same power-law dependence of the magnetic field follows from the range of the optical emission down to the horizon. The observed optical polarization from NGC 4258 allowed us to find the values 10^3 - 10^4 Gauss at the horizon, depending on the particular choice of the model parameters. We also discuss the wavelength dependencies of the light polarization, and possibly applying them for a more realistic choice of accretion disk parameters.
14 pages, 2 figures
References in corpus (6)
- The Spatial Structure of An Accretion Disk
- X-Ray and Optical Microlensing in the Lensed Quasar PG 1115+080
- Polarization signatures of strong gravity in AGN accretion discs
- A Magnetic Alpha-Omega Dynamo in Active Galactic Nuclei Disks: II. Magnetic Field Generation, Theories and Simulations
- Influence of the Magnetic Coupling Process on the Advection Dominated Accretion Flows around Black Holes
- Dynamical behaviour of the `beads' along the magnetic field lines near a rotating black hole
Cited by in corpus (15)
- Can environmental effects spoil precision gravitational-wave astrophysics?
- Environmental Effects for Gravitational-wave Astrophysics
- Polarized light from Sgr A* in the near-infrared -band
- Optical circular polarization in quasars
- Towards a complete description of spectra and polarization of black hole accretion disks: albedo profiles and returning radiation
- Spectropolarimetric Observations of Active Galactic Nuclei with the 6-m BTA Telescope
- Magnetic fields of active galactic nuclei and quasars with polarized broad H-alpha lines
- Estimations of the magnetic field strength in the torus of AGN using near-infrared polarimetry
- Radiation from an emitter revolving around a magnetized non-rotating black hole
- New mechanism of radiation polarization in Seyfert-1 AGNs
- Criterions for retrograde rotation of accreting black holes
- The relationship between variable and polarized optical spectral components of luminous type 1 non-blazar quasars
- Active Galactic Nuclei in polarized light
- Probing AGN with spectropolarimetry: accretion disk and SMBH parameters
- Polarization of AGN in UV Spectral Range