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On the fate of gas accreting at a low rate on to a black hole

Monthly Notices of the Royal Astronomical Society · 1999 · Vol. 303(1) · pp. L1–L5
R. D. BlandfordMitchell C. Begelman

Abstract

Gas supplied conservatively to a black hole at rates well below the Eddington rate may not be able to radiate effectively and the net energy flux, including the energy transported by the viscous torque, is likely to be close to zero at all radii. This has the consequence that the gas accretes with positive energy so that it may escape. Accordingly, we propose that only a small fraction of the gas supplied actually falls on to the black hole, and that the binding energy it releases is transported radially outward by the torque so as to drive away the remainder in the form of a wind. This is a generalization of and an alternative to an ‘ADAF’ solution. Some observational implications and possible ways to distinguish these two types of flow are briefly discussed.

Astrophysical Phenomena and ObservationsAstrophysics and Cosmic PhenomenaPulsars and Gravitational Waves ResearchPhysicsAstrophysicsBlack hole (networking)Flux (metallurgy)Energy fluxAccretion (finance)RADIUSMechanicsAstronomy
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References
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The Astrophysical Journal · 1994 · 2,102 citations
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Monthly Notices of the Royal Astronomical Society · 1952 · 2,293 citations
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Monthly Notices of the Royal Astronomical Society · 1974 · 2,513 citations
Hydromagnetic flows from accretion discs and the production of radio jets
Monthly Notices of the Royal Astronomical Society · 1982 · 3,830 citations
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