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Alignment and precession of a black hole with a warped accretion disc
Authors:Rebecca G Martin  J E Pringle  Christopher A Tout
Institution:Institute of Astronomy, University of Cambridge, The Observatories, Madingley Road, Cambridge CB3 0HA
Abstract:We consider the shape of an accretion disc whose outer regions are misaligned with the spin axis of a central black hole and calculate the steady state form of the warped disc in the case where the viscosity and surface densities are power laws in the distance from the central black hole. We discuss the shape of the resulting disc in both the frame of the black hole and that of the outer disc. We note that some parts of the disc and also any companion star maybe shadowed from the central regions by the warp. We compute the torque on the black hole caused by the Lense–Thirring precession, and hence compute the alignment and precession time-scales. We generalize the case with viscosity and hence surface density independent of radius to more realistic density distributions for which the surface density is a decreasing function of radius. We find that the alignment time-scale does not change greatly but the precession time-scale is more sensitive. We also determine the effect on this time-scale if we truncate the disc. For a given truncation radius, the time-scales are less affected for more sharply falling density distributions.
Keywords:accretion  accretion discs  galaxies: active  galaxies: jets  quasars: general  X-rays: binaries
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