Accretion of a massive magnetized torus on a rotating black hole
arXiv:0905.4440 · doi:10.1016/j.newast.2010.07.001
Abstract
We present numerical simulations of the axisymmetric accretion of a massive magnetized plasma torus on a rotating black hole. We use a realistic equation of state, which takes into account neutrino cooling and energy loss due to nucleus dissociations. We simulated various magnetic field configurations and torus models, both optically thick and thin for neutrinos. It is shown that the neutrino cooling does not significantly change either the structure of the accretion flow or the total energy release of the system. The calculations evidence heating of the wind surrounding the collapsar by the shock waves generated at the jet-wind border. This mechanism can give rise to a hot corona around the binary system like SS433. Angular momentum of the accreting matter defines the time scale of the accretion. Due to the absence of the magnetic dynamo in our calculations, the initial strength and topology of the magnetic field determines magnetization of the black hole, jet formation properties and the total energy yield. We estimated the total energy transformed to jets as {ergs} which was sufficient to explain hypernova explosions like GRB 980425 or GRB 030329.
11 pages, 9 figures, submitted to MNRAS
References in corpus (17)
- Long gamma-ray bursts and core-collapse supernovae have different environments
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
- Magnetic acceleration of relativistic AGN jets
- The Influence of Magnetic Field Geometry on the Evolution of Black Hole Accretion Flows: Similar Disks, Drastically Different Jets
- The path to the enhanced and advanced LIGO gravitational-wave detectors
- Disk-Jet Coupling in Black Hole Accretion Systems I: General Relativistic Magnetohydrodynamical Models
- Magnetized Tori around Kerr Black Holes: Analytic Solutions with a Toroidal Magnetic Field
- Stellar explosions powered by the Blandford-Znajek mechanism
- Neutrino pair annihilation near accreting, stellar-mass black holes
- Numerical Study on GRB-Jet Formation in Collapsars
- Development of General Relativistic Magnetohydrodynamic Code and its Application to Central Engine of Long Gamma-Ray Bursts
- Where is the Radiation Edge in Magnetized Black Hole Accretion discs?
- Dynamics of magnetized relativistic tori oscillating around black holes
- Surprising Evolution of the Parsec-scale Faraday Rotation Gradients in the Jet of the BL Lac Object B1803+784
- Magnetic acceleration of ultra-relativistic GRB and AGN jets
- Electric charge estimation of a new-born black hole
Cited by in corpus (33)
- Efficient Generation of Jets from Magnetically Arrested Accretion on a Rapidly Spinning Black Hole
- Impulsive Acceleration of Strongly Magnetized Relativistic Flows
- Accelerating AGN jets to parsec scales using general relativistic MHD simulations
- GRB170817A associated with GW170817: multifrequency observations and modeling of prompt gamma-ray emission
- Plasmoid formation in global GRMHD simulations and AGN flares
- General Relativistic Modeling of Magnetized Jets from Accreting Black Holes
- Model of extended emission of short Gamma-ray Bursts
- Formation of black hole and accretion disk in a massive high-entropy stellar core collapse
- Gamma-Ray Burst Dynamics and Afterglow Radiation from Adaptive Mesh Refinement, Special Relativistic Hydrodynamic Simulations
- Supercollapsars and their X-ray Bursts
- Jet Luminosity From Neutrino-Dominated Accretion Flows in Gamma-Ray Bursts
- GRB and blazar jets shining through their stripes
- Scenarios for ultrafast gamma-ray variability in AGN
- Magnetic reconnection and plasmoid formation in three-dimensional accretion flows around black holes
- A new equilibrium torus solution and GRMHD initial conditions
- Turbulent Reconnection in Relativistic Plasmas And Effects of Compressibility
- Evolution of the Relativistic Plasmoid-Chain in the Poynting-Dominated Plasma
- Accretion and outflow from a magnetized, neutrino cooled torus around the gamma ray burst central engine
- GRMHD Simulations and Modeling for Jet Formation and Acceleration Region in AGNs
- Evolution of the Magnetized, Neutrino-Cooled Accretion Disk in the Aftermath of a Black Hole Neutron Star Binary Merger
- Review of scientific topics for Millimetron space observatory
- Fermi~I particle acceleration in converging flows mediated by magnetic reconnection
- Self-gravity in neutrino-dominated accretion disks
- Microphysics in the gamma ray burst central engine
- Radiation Signatures From Striped Blazar Jet
- Von Zeipel's theorem for a magnetized circular flow around a compact object
- Recollimation Boundary Layers in Relativistic Jets
- Effect of the toroidal magnetic field on the runaway instability of relativistic tori
- Signatures of very massive stars: supercollapsars and their cosmological rate
- Conditions for jet break-out in NS mergers
- Helical and nonhelical large-scale dynamos in thin accretion discs
- Model for an optically thick torus in local thermodynamic equilibrium around a black hole
- The Role of Inhomogeneities in the Turbulent Accretion of Black Holes