Tidal Disruption and Magnetic Flux Capture: Powering a Jet from a Quiescent Black Hole
arXiv:1410.0366 · doi:10.1093/mnras/stu2041
Abstract
The transient Swift J1644+57 is believed to have been produced by an unlucky star wandering too close to a supermassive black hole (BH) leading to a tidal disruption event. This unusual flare displayed highly super-Eddington X-ray emission which likely originated in a relativistic, collimated jet. This presents challenges to modern accretion and jet theory as upper limits of prior BH activity, which we obtain from the radio afterglow of this event, imply that both the pre-disruption BH and stellar magnetic fluxes fall many orders of magnitude short of what is required to power the observed X-ray luminosity. We argue that a pre-existing, "fossil" accretion disc can contain a sufficient reservoir of magnetic flux and that the stellar debris stream is capable of dragging this flux into the BH. To demonstrate this, we perform local, 3D magnetohydrodynamic simulations of the disc--stream interaction and demonstrate that the interface between the two is unstable to mixing. This mixing entrains a sufficient amount of fossil disc magnetic flux into the infalling stellar debris to power the jet. We argue that the interaction with the fossil disc can have a pronounced effect on the structure and dynamics of mass fallback and likely the resulting transient. Finally, we describe possible ramifications of these interactions on unresolved problems in tidal disruption dynamics, in particular, the efficiency of debris circularization, and effects of the disruption on the preexisting black hole system. Animations online: http://goo.gl/T84tLs
MNRAS Accepted, September 30th, 2014. 20 pages, 14 figures. Animations online: http://goo.gl/T84tLs
References in corpus (13)
- PLUTO: a Numerical Code for Computational Astrophysics
- Modelling the behaviour of accretion flows in X-ray binaries
- Athena: A New Code for Astrophysical MHD
- Shocks and cold fronts in galaxy clusters
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- An Unsplit Godunov Method for Ideal MHD via Constrained Transport in Three Dimensions
- The Influence of Magnetic Field Geometry on the Evolution of Black Hole Accretion Flows: Similar Disks, Drastically Different Jets
- UV/Optical Detections of Candidate Tidal Disruption Events by GALEX and CFHTLS
- Alignment of Magnetized Accretion Disks and Relativistic Jets with Spinning Black Holes
- Magnetic draping of merging cores and radio bubbles in clusters of galaxies
- A 200-s Quasi-Periodicity Following the Tidal Disruption of a Star by a Dormant Black Hole
- Shock waves in tidally compressed stars by massive black holes
- Bubble-Wrap for Bullets: The Stability Imparted By A Thin Magnetic Layer
Cited by in corpus (21)
- Magnetohydrodynamic Simulations of Active Galactic Nucleus Disks and Jets
- Tidal disruption events from supermassive black hole binaries
- Radio observations of the tidal disruption event XMMSL1 J074085
- The radio afterglow of Swift J1644+57 reveals a powerful jet with fast core and slow sheath
- Simulations of Magnetic Fields in Tidally-Disrupted Stars
- The Physics of Accretion Discs, Winds And Jets in Tidal Disruption Events
- GRRMHD Simulations of MAD Accretion Disks Declining from Super-Eddington to Sub-Eddington Accretion Rates
- Ultra-Close Encounters of Stars With Massive Black Holes: Tidal Disruption Events With Prompt Hyperaccretion
- Global Simulations of Tidal Disruption Event Disk Formation via Stream Injection in GRRMHD
- Synchrotron Afterglow Model for AT 2022cmc: Jetted Tidal Disruption Event or Engine-Powered Supernova?
- Late-time X-ray Observations of the Jetted Tidal Disruption Event AT2022cmc: The Relativistic Jet Shuts Off
- On the formation of a quasi-stationary twisted disc after a tidal disruption event
- Cosmic-Ray Constraints on the Flux of Ultra-High-Energy Neutrino Event KM3-230213A
- Tidal disruption rate suppression by the event horizon of spinning black holes
- Evidence for Low Universal Equilibrium Black Hole Spin in Luminous Magnetically Arrested Disks
- Revisiting X-ray Afterglows of Jetted Tidal Disruption Events with the External Reverse Shock
- Multi-messenger signatures of delayed choked jets in tidal disruption events
- Jet Tilt Instability from Stream-Disk Interactions in MAD Disks
- Radiation-magnetohydrodynamic Simulations of Accretion Flow Formation After a Tidal Disruption Event
- Review: Accretion Disk Evolution in Tidal Disruption Events
- A Mildly Relativistic Outflow Launched Two Years after Disruption in the Tidal Disruption Event AT2018hyz