Suppressing hot gas accretion to supermassive black holes by stellar winds
arXiv:1206.6029 · doi:10.1093/mnras/stt019
Abstract
We argue that one of the basic assumptions of the Bondi accretion process, that the accreting object has zero pressure, might not hold in many galaxies because of the pressure exerted by stellar winds of star orbiting the central super massive black hole (SMBH). Hence, the Bondi accretion cannot be used in these cases, such as in the galaxy NGC 3115. The winds of these high-velocity stars are shocked to temperatures above the virial temperature of the galaxy, leading to the formation of a hot bubble of size ~0.1-10 pc near the center. This hot bubble can substantially reduce the mass accretion rate by the SMBH. If the density of the hot bubble is lower than that of the interstellar medium (ISM), a density-inversion layer is formed. As the gas loses energy by X-ray radiation, eventually more mass of the cooling shocked stellar winds will be accreted to the SMBH. This accretion will be of cold clumps. After a period of millions of years of low AGN activity, therefore, a stronger AGN activity will occur that will heat and expel gas, much as in cooling flow clusters. Adding to other problems of the Bondi process, our results render the Bondi accretion irrelevant for AGN feedback in cooling flow in galaxies and small groups of galaxies and during galaxy formation.
Published in MNRAS
References in corpus (8)
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Cited by in corpus (8)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- The Megasecond Chandra XVP Observation of NGC 3115: Witnessing the Flow of Hot Gas within the Bondi Radius
- What triggers a radio AGN? The intriguing case of PKSB 1718-649
- ALMA observations of AGN fuelling: the case of PKS B1718-649
- The role of feedback in accretion on Low Luminosity AGN: Sgr A* case study
- Bondi-Hoyle-Lyttleton accretion in the presence of small rigid bodies around a black hole
- Modeling Hot Gas Flow in the Low-Luminosity Active Galactic Nucleus of NGC3115
- Asymmetry in The Observed Metal-Rich Ejecta of Galactic Type Ia Supernova Remnant G299.2-2.9