On the Azimuthal Stability of Shock Waves around Black Holes
arXiv:astro-ph/9812453 · doi:10.1086/307079
Abstract
Analytical studies and numerical simulations of time dependent axially symmetric flows onto black holes have shown that it is possible to produce stationary shock waves with a stable position both for ideal inviscid and for moderately viscous accretion disks. We perform several two dimensional numerical simulations of accretion flows in the equatorial plane to study shock stability against non-axisymmetric azimuthal perturbations. We find a peculiar new result. A very small perturbation seems to produce an instability as it crosses the shock, but after some small oscillations, the shock wave suddenly transforms into an asymmetric closed pattern, and it stabilizes with a finite radial extent, despite the inflow and outflow boundary conditions are perfectly symmetric. The main characteristics of the final flow are: 1) The deformed shock rotates steadily without any damping. It is a permanent feature and the thermal energy content and the emitted energy vary periodically with time. 2) This behavior is also stable against further perturbations. 3) The average shock is still very strong and well defined, and its average radial distance is somewhat larger than that of the original axially symmetric circular shock. 4) Shocks obtained with larger angular momentum exhibit more frequencies and beating phenomena. 5) The oscillations occur in a wide range of parameters, so this new effect may have relevant observational consequences, like (quasi) periodic oscillations, for the accretion of matter onto black holes. Typical time scales for the periods are 0.01 and 1000 seconds for black holes with 10 and 1 million solar mass, respectively.
15 pages, 7 figures, accepted by the Astrophysical Journal
References in corpus (4)
Cited by in corpus (28)
- Non-radial instabilities of isothermal Bondi accretion with a shock: vortical-acoustic cycle vs post-shock acceleration
- Stellar winds, dead zones, and coronal mass ejections
- Behaviour of dissipative accretion flows around black holes
- Formation of wind-captured discs in Supergiant X-ray binaries : consequences for Vela X-1 and Cygnus X-1
- General Relativistic Hydrodynamic Simulations and Linear Analysis of the Standing Accretion Shock Instability around a Black Hole
- Simulations of Viscous Accretion Flow around Black Holes in Two-Dimensional Cylindrical Geometry
- Shock oscillation model for QPOs in stellar-mass and supermassive black holes
- The Standing Accretion Shock Instability in the Disk around the Kerr Black Hole
- Effects of the composition on transonic properties of accretion flows around black holes
- Quasi-Spherical, Time-Dependent Viscous Accretion Flow: One-Dimensional Results
- Radiative Shocks in Rotating Accretion Flows around Black Holes
- Effects of Compton Cooling on the Hydrodynamic and the Spectral Properties of a Two Component Accretion Flow around a Black Hole
- General Relativistic Numerical Simulation of sub-Keplerian Transonic Accretion Flows onto Black Holes: Schwarzschild Spacetime
- Non-axisymmetric instabilities in shocked accretion flows with differential rotation
- Three Dimensional Simulations of Advective, Sub-Keplerian Accretion Flow onto Non-rotating Black Holes
- Modeling the time-resolved quasi-periodic oscillations in AGNs
- Non-axisymmetric instabilities in shocked adiabatic accretion flows
- Acoustic geometry obtained through the perturbation of the Bernoulli's constant
- Linear perturbations of low angular momentum accretion flow in the Kerr metric and the corresponding emergent gravity phenomena
- Direct time radio variability induced by non-axisymmetric standing accretion shock instability: implications for M87
- Spherical accretion: the influence of inner boundary and quasi-periodic oscillations
- Effects of resistivity on standing shocks in low angular momentum flows around black holes
- Spectroscopically Confirmed Large-Scale Structures Associated to a z=0.83 Cluster
- Standing Shocks in Magnetized Dissipative Accretion Flow around Black Holes
- Numerical Simulation of Rotating Accretion Disk Around the Schwarzschild Black Hole Using GRH Code
- Signatures of Accretion Shocks in Broadband Spectrum of Advective Flows Around Black Holes
- Collapsar Disk Outflows III: Detectable Neutrino and Gravitational Wave Signatures
- A simple model of radiative emission in M87