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Radial self-gravity of accretion disc around supermassive black holes
Authors:Yang Lantian  Liu Xiaoci
Institution:(1) Huazhong Normal University, Whan, China;(2) Present address: Changsha Rail Institute, Changsha, China
Abstract:This paper studies the properties of self-gravity of accretion discs around supermassive black holes. With integration on the thin disc configuration, this paper has calculated the radial and vertical components of self-gravity of accretion discs. The discussion mainly concentrates on the radial component, and the results are briefly as follows: lsquofor accretion discs around supermassive black holes (Msim10 8–1010 Modot). At the distance where (R/R g)sim105–104, the radial component of self-gravity dominates over the central one where the dynamical structure of the accretion discs completely differs from that of Keplerian disc. A turbulence driven by radial self-gravity instability as a kind of energy source is proposed. This paper has two criteria for the comparison of magnitude between the self-gravity of accretion discs and the gravity of the central black hole, from which an analytic estimation for the outer radius of the accretion discs has been derived. The results of this paper may be used to explain the accretion discs of quasars and AGNs.This research was supported by the National Natural Science Foundation of China.
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