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      Backreaction of accreting matter onto a black hole in the Eddington-Finkelstein coordinates

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          Abstract

          We study backreaction of accreting matter onto a spherically symmetric black hole in a perturbative way, when accretion is in a quasi-steady state. General expressions for corrections to the metric coefficients are found in the Eddington-Finkelstein coordinates. It is shown that near the horizon of a black hole, independently of the form of the energy-momentum tensor, the leading corrections to the metric are of the Vaidya form. The relation to other solutions is discussed and particular examples are presented.

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          CONSTANT ELECTROMAGNETIC FIELDS

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            Accretion onto a moving black hole: An exact solution

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              Ultra-hard fluid and scalar field in the Kerr-Newman metric

              An analytic solution for the accretion of ultra-hard perfect fluid onto a moving Kerr-Newman black hole is found. This solution is a generalization of the previously known solution by Petrich, Shapiro and Teukolsky for a Kerr black hole. Our solution is not applicable for an extreme black hole due to violation of the test fluid approximation. We also present a stationary solution for a massless scalar field in the metric of a Kerr-Newman naked singularity.
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                Author and article information

                Journal
                13 February 2012
                2012-05-15
                Article
                10.1088/0264-9381/29/11/115002
                1202.2836
                27bbb1e1-bc00-43cd-bc2f-c5bb0e56069d

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                LPT-Orsay 12-47
                Class. Quantum Grav. 29 115002 (2012)
                12 pages, v.2: references added, typos corrected, matches published version
                gr-qc

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