Close stars and accretion in Low Luminosity Active Galactic Nuclei
arXiv:astro-ph/0403158 · doi:10.1111/j.1365-2966.2004.07993.x
Abstract
Quasar accretion disks are believed to form stars by self-gravity. Low Luminosity Active Galactic Nuclei (LLAGN) are much dimmer galactic centers, and are often believed to be quasars that ran out of gaseous fuel. LLAGN accretion disks should thus co-exist with thousands to millions of stars or proto-stars left from the previous stronger accretion activity. In principle, these stars may produce several important effects: (i) contribute to the optical/UV spectra of some LLAGN; (ii) reprocessing of the stellar radiation in the dusty disks could dominate the LLAGN infra-red spectra; (iii) deplete the (accretion) gas disk much faster than it can accrete onto the supper-massive black hole (SMBH); (iv) stars, individually or in groups, may slow down and modulate the accretion flow significantly due to their inertia. In this way they may produce the LLAGN cut-off disks; (v) alternatively, frequent enough stellar collisions and resulting stellar disruptions could keep the inner disk empty. Here we explore these ideas. We find that, despite ``low'' luminosities of LLAGN, unrealistically high stellar densities are required to make a sizable radiative contribution to the (HST) optical/UV spectra of these galactic nuclei. Stellar contribution to the infrared spectrum is more likely. Further, if LLAGN are in a quasi steady-state for as long as 10^7 years or more, too high stellar densities would again be required to significantly affect the dynamics of accretion flow. However, if LLAGN are ``short''-lived phenomena, e.g. t < 10^5 years, quiescent states of quiescence-outburst cycles, then embedded stars may be much more important through the mass effects (iii) -- (v). With observations of LLAGN becoming progressively better, it will be more and more difficult to neglect the presence of close stars in and around nuclear accretion disks.
Submitted to MNRAS; 9 pages, 2 figures
References in corpus (16)
- The First Measurement of Spectral Lines in a Short-Period Star Bound to the Galaxy's Central Black Hole: A Paradox of Youth
- The Stellar Cusp Around the Supermassive Black Hole in the Galactic Center
- Stellar disk in the galactic center -- a remnant of a dense accretion disk?
- Stellar dynamics in the central arcsecond of our galaxy
- Three-dimensional Calculations of High and Low-mass Planets Embedded in Protoplanetary Discs
- Nonlinear Outcome of Gravitational Instability in Disks with Realistic Cooling
- Substellar companions and isolated planetary mass objects from protostellar disc fragmentation
- Multiwavelength Spectrum of the Black Hole XTE J1118+480 in Quiescence
- The Link between Warm Molecular Disks in Maser Nuclei and Star Formation near the Black Hole at the Galactic Center
- The fate of star clusters near the Galactic center I: Analytic considerations
- Orbital capture of stars by a massive black hole via exchanges with compact remnants
- X-ray flares from Sgr A*: star-disk interactions?
- The Statistical Properties of Galaxies Containing ULXs
- Close stars and an inactive accretion disk in Sgr A*: Eclipses and flares
- Iron Kalpha emission from the low-luminosity Active Galaxies M81 and NGC 4579
- Bright stars and an inactive disk in Sgr A* and other dormant galaxy centers. I. The optically thick disk
Cited by in corpus (7)
- Simulations of star formation in a gaseous disc around sgr A* - a failed AGN
- Self-gravitating accretion disk in Sgr A* few million years ago: was Sgr A* a failed quasar?
- Massive stars in sub-parsec rings around galactic centers
- Star formation in accretion discs : from the Galactic Center to Active Galactic Nuclei
- Star-forming accretion flows and the low luminosity nuclei of giant elliptical galaxies
- Irradiation of accretion discs in active galactic nuclei due to warm absorber
- Spherical Accretion in Nearby Weakly Active Galaxies