Are SMBHs shrouded by "super-Oort" clouds of comets and asteroids?
arXiv:1109.1217 · doi:10.1111/j.1365-2966.2011.19777.x
Abstract
The last decade has seen a dramatic confirmation that an in situ star formation is possible inside the inner parsec of the Milky Way. Here we suggest that giant planets, solid terrestrial-like planets, comets and asteroids may also form in these environments, and that this may have observational implications for Active Galactic Nuclei (AGN). Like in debris discs around main sequence stars, collisions of large solid objects should initiate strong fragmentation cascades. The smallest particles in such a cascade - the microscopic dust - may provide a significant opacity. We put a number of observational and physical constraints on AGN obscuring torii resulting from such fragmentation cascades. We find that torii fed by fragmenting asteroids disappear at both low and high AGN luminosities. At high luminosities, , where is the Eddington limit, the AGN radiation pressure blows out the microscopic dust too rapidly. At low luminosities, on the other hand, the AGN discs may avoid gravitational fragmentation into stars and solids. We also note that these fragmentation cascades may be responsible for astrophysically "large" dust particles of approximately micrometer sizes that were postulated by some authors to explain unusual absorption properties of the AGN torii.
a typo in the title corrected
References in corpus (17)
- The Two Young Star Disks in the Central Parsec of the Galaxy: Properties, Dynamics and Formation
- Starbursts near supermassive black holes: young stars in the Galactic Center, and gravitational waves in LISA band
- The Two Modes of Gas Giant Planet Formation
- Simulations of star formation in a gaseous disc around sgr A* - a failed AGN
- Star Formation Around Super-Massive Black Holes
- The distribution of silicate strength in Spitzer spectra of AGNs and ULIRGs
- Can giant planets form by gravitational fragmentation of discs?
- New Indicators for AGN Power: The Correlation Between [O IV] lambda 25.89 micron and Hard X-ray Luminosity for Nearby Seyfert Galaxies
- Self-gravitating accretion disk in Sgr A* few million years ago: was Sgr A* a failed quasar?
- Spitzer IRS spectra of a large sample of Seyfert galaxies: a variety of infrared SEDs in the local AGN population
- 9.7 um Silicate Features in AGNs: New Insights into Unification Models
- Parsec-scale dust distributions in Seyfert galaxies - Results of the MIDI AGN snapshot survey
- Simulations of the formation of stellar discs in the Galactic centre via cloud-cloud collisions
- Resolved debris disk emission around eta Tel: a young Solar System or ongoing planet formation?
- The Galactic Centre in the Far Infrared
- Radiation Pressure Supported AGN Tori with Hard X-Ray and Stellar Heating
- Clumpy winds and the obscuration of Active Galactic Nuclei
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