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Stability of accretion disk around rotating black holes: a pseudo-general-relativistic fluid dynamical study

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arxiv astro-ph/0212186 v1 pith:LWYLH3C3 submitted 2002-12-07 astro-ph gr-qc

classification astro-phgr-qc
keywords diskblackholeaccretionrotatingrotationaroundchosen
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We discuss the solution of accretion disk when the black hole is chosen to be rotating. We study, how the fluid properties get affected for different rotation parameters of the black hole. We know that no cosmic object is static in Universe. Here the effect of the rotation of the black hole to the space-time is considered following an earlier work of the author, where the pseudo-Newtonian potential was prescribed for the Kerr geometry. We show that, with the inclusion of rotation of the black hole, the valid disk parameter region dramatically changes and disk becomes unstable. Also we discuss about the possibility of shock in accretion disk around rotating black holes. When the black hole is chosen to be rotating, the sonic locations of the accretion disk get shifted or disappear, making the disk unstable. To bring it in the stable situation, the angular momentum of the accreting matter has to be reduced/enhanced (for co/counter-rotating disk) by means of some physical process.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Threshold Drop in Accretion Density if Dark Energy is Accreting onto a Supermassive Black Hole

    gr-qc 2019-08 conditional novelty 5.0 of 10

    Viscous, rotating accretion of modified Chaplygin gas dark energy onto a supermassive black hole produces a threshold drop in accretion density and a stronger wind.

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