Black hole magnetosphere with small scale flux tubes--II. Stability and dynamics
arXiv:1901.02834 · doi:10.1093/mnras/stz1599
Abstract
In some Seyfert Galaxies, the hard X-rays that produce fluorescent emission lines are thought to be generated in a hot corona that is compact and located at only a few gravitational radii above the supermassive black hole. We consider the possibility that this X-ray source may be powered by small scale magnetic flux tubes attached to the accretion disk near the black hole. We use three dimensional, time dependent force-free simulations in a simplified setting to study the dynamics of such flux tubes as they get continuously twisted by the central compact star/black hole. We find that, the dynamical evolution of the flux tubes connecting the central compact object and the accretion disk is strongly influenced by the confinement of the surrounding field. Although differential rotation between the central object and the disk tends to inflate the flux tubes, strong confinement from surrounding field quenches the formation of a jet-like outflow, as the inflated flux tube becomes kink unstable and dissipates most of the extracted rotational energy relatively close to the central object. Such a process may be able to heat up the plasma and produce strong X-ray emission. We estimate the energy dissipation rate and discuss its astrophysical implications.
16 pages, 17 figures. Accepted for publication in MNRAS
References in corpus (6)
- X-ray reverberation around accreting black holes
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Particle acceleration in axisymmetric pulsar current sheets
- Driving extreme variability: The evolving corona and evidence for jet launching in Markarian 335
- X-Ray and Optical Microlensing in the Lensed Quasar PG 1115+080
- Black-hole jets without large-scale net magnetic flux
Cited by in corpus (22)
- Discovery of oscillations above 200 keV in a black hole X-ray binary with Insight-HXMT
- Accretion Geometry in the Hard State of the Black-Hole X-Ray Binary MAXI J1820+070
- Magnetic reconnection and plasmoid formation in three-dimensional accretion flows around black holes
- Comptonization by Reconnection Plasmoids in Black Hole Coronae I: Magnetically Dominated Pair Plasma
- Spinning black holes magnetically connected to a Keplerian disk -- Magnetosphere, reconnection sheet, particle acceleration and coronal heating
- Transitions and Origin of the Type-B Quasi-Periodic Oscillation in the Black Hole X-ray Binary MAXI~ J1348--630
- Magnetar bursts due to Alfvén wave nonlinear breakout
- Electromagnetic precursors to black hole - neutron star gravitational wave events: Flares and reconnection-powered fast-radio transients from the late inspiral
- Acceleration and cooling of the corona during X-ray flares from the Seyfert galaxy I Zw 1
- Local models of two-temperature accretion disc coronae. I. Structure, outflows, and energetics
- Wavelet spectral timing: X-ray reverberation from a dynamic black hole corona hidden beneath ultrafast outflows
- Electromagnetic signatures of strong-field gravity from accreting black holes
- Investigation of a small X-ray flaring event in NLS1 galaxy NGC 4051
- Comparison of magnetic diffusion and reconnection in ideal and resistive relativistic magnetohydrodynamics, ideal magnetodynamics, and resistive force-free electrodynamics
- The Nature of Luminous Quasars with Very Large C IV Equivalent Widths
- The impact of resistivity on the variability of black hole accretion flows
- General relativistic force-free electrodynamics with a discontinuous Galerkin-finite difference hybrid method
- GRMHD simulations of BH activation by small scale magnetic loops: Formation of striped jets and active coronae
- A kinetic model of jet-corona coupling in accreting black holes
- Driven Collisionless Reconnection of Force-free Flux Tubes: From Onset to Coalescence
- Kerr black hole in presence of force-free magnetic field
- The Role of Inhomogeneities in the Turbulent Accretion of Black Holes