AGN Dusty Tori: I. Handling of Clumpy Media
arXiv:0806.0511 · doi:10.1086/590482
Abstract
According to unified schemes of Active Galactic Nuclei (AGN), the central engine is surrounded by dusty, optically thick clouds in a toroidal structure. We have recently developed a formalism that for the first time takes proper account of the clumpy nature of the AGN torus. We now provide a detailed report of our findings in a two-paper series. Here we present our general formalism for radiative transfer in clumpy media and construct its building blocks for the AGN problem -- the source functions of individual dusty clouds heated by the AGN radiation field. We show that a fundamental difference from smooth density distributions is that in a clumpy medium, a large range of dust temperatures coexist at the same distance from the radiation central source. This distinct property explains the low dust temperatures found close to the nucleus of NGC1068 in 10 \mic interferometric observations. We find that irrespective of the overall geometry, a clumpy dust distribution shows only moderate variation in its spectral energy distribution, and the 10\mic\ absorption feature is never deep. Furthermore, the X-ray attenuating column density is widely scattered around the column density that characterizes the IR emission. All of these properties are characteristic of AGN observations. The assembly of clouds into AGN tori and comparison with observations is presented in the companion paper.
To appear in ApJ September 20, 2008
References in corpus (7)
- Mid-IR Galaxy Classification Based on Silicate Obscuration and PAH Equivalent Width
- Resolving the complex structure of the dust torus in the active nucleus of the Circinus galaxy
- Dust covering factor, silicate emission and star formation in luminous QSOs
- Radiative Transfer Modeling of Three-Dimensional Clumpy AGN Tori and its Application to NGC 1068
- The distribution of silicate strength in Spitzer spectra of AGNs and ULIRGs
- Silicates in Ultra-Luminous Infrared Galaxies
- Multiple Regression Analysis of the Variable Component in the Near-Infrared Region for Type 1 AGN MCG+08-11-011
Cited by in corpus (5)
- The Infrared Nuclear Emission of Seyfert Galaxies on Parsec Scales: Testing the Clumpy Torus models
- The effect of stellar feedback on the formation and evolution of gas and dust tori in AGN
- The Origin of the Silicate Emission Features in the Seyfert 2 Galaxy, NGC 2110
- The HELLAS2XMM Survey. XII. The infrared/sub-millimeter view of an X-ray selected Type 2 quasar at z=2
- Disk-outflow Connection and the Molecular Dusty Torus