Bending Instability of an Accretion Disc Around a Black Hole
arXiv:astro-ph/0110692 · doi:10.1086/338356
Abstract
We demonstrate that generically an accretion disk around a compact object could have a new type of instability in that the accretion flow need not be symmetric with respect to the equatorial plane even when matter is supplied symmetrically farther out. We find that this behaviour is mainly due to interaction of outgoing matter bounced off the centrifugal barrier and the incoming accretion. We believe that X-ray variability could be developed by this instability.
5 Latex pages and four figures. Accepted for Astrophysical J. Letters
Cited by in corpus (8)
- The effect of cooling on time dependent behaviour of accretion flows around black holes
- SWIFT view of the 2015 outburst of GS 2023+338 (V404 Cyg): complex evolution of spectral and temporal characteristics
- Quasi-Spherical, Time-Dependent Viscous Accretion Flow: One-Dimensional Results
- Effects of the composition on transonic properties of accretion flows around black holes
- On the Ejection Mechanism of Bullets in SS 433
- Spectroscopically Confirmed Large-Scale Structures Associated to a z=0.83 Cluster
- Numerical Simulation of Vertical Oscillations in an Axisymmetric Thick Accretion Flow around a Black Hole
- Timing Properties of Shocked Accretion Flows around Neutron Stars in Presence of Cooling