Active galaxy unification in the era of X-ray polarimetry
arXiv:1001.5021 · doi:10.1088/2041-8205/711/2/L112
Abstract
Active Galactic Nuclei (AGN), Seyfert galaxies and quasars, are powered by luminous accretion and often accompanied by winds which are powerful enough to affect the AGN mass budget, and whose observational appearance bears an imprint of processes which are happening within the central parsec around the black hole (BH). One example of such a wind is the partially ionized gas responsible for X-ray and UV absorption ('warm absorbers'). Here we show that such gas will have a distinct signature when viewed in polarized X-rays. Observations of such polarization can test models for the geometry of the flow, and the gas responsible for launching and collimating it. We present calculations which show that the polarization depends on the hydrodynamics of the flow, the quantum mechanics of resonance line scattering and the transfer of polarized X-ray light in the highly ionized moving gas. The results emphasize the three dimensional nature of the wind for modeling spectra. We show that the polarization in the 0.1-10 keV energy range is dominated by the effects of resonance lines. We predict a X-ray polarization signature of type-2 objects in this energy range. These results are general to flows which originate from a cold torus-like structure, located pc from the BH, which wraps the BH and is ultimately responsible for the apparent dichotomy between type 1 and type 2 AGNs. Such signals will be detectable by future dedicated X-ray polarimetry space missions, such as the NASA Gravity and Extreme Magnetism SMEX, GEMS.
13 pages, 4 figures, ApJ Letters accepted for publication
References in corpus (7)
- The AGN Obscuring Torus -- End of the "Doughnut" Paradigm?
- A soft X-ray study of Type I AGN observed with Chandra HETGS
- Dynamics of Accretion Flows Irradiated by a Quasar
- AGN Obscuring Tori Supported by Infrared Radiation Pressure
- An axisymmetric, hydrodynamical model for the torus wind in AGN
- An axisymmetric hydrodynamical model for the torus wind in AGN. II: X-ray excited funnel flow
- An axisymmetric hydrodynamical model for the torus wind in AGN. III: Spectra from 3D radiation transfer calculations
Cited by in corpus (5)
- AGN obscuration through dusty infrared dominated flows. I. Radiation-hydrodynamics solution for the wind
- AGN obscuration through dusty infrared dominated flows. II. Multidimensional, radiation-hydrodynamics modeling
- Spectral and polarization properties of reflected X-ray emission from black-hole accretion discs for a distant observer: the lamp-post model
- Warm Absorber Diagnostics of AGN Dynamics
- X-ray Polarization from High Mass X-ray Binaries