General relativistic simulations of black hole-neutron star mergers: Effects of tilted magnetic fields
arXiv:1209.1632 · doi:10.1103/PhysRevD.86.084026
Abstract
Black hole--neutron star (BHNS) binary mergers can form disks in which magnetorotational instability (MRI)-induced turbulence may drive accretion onto the remnant BH, supporting relativistic jets and providing the engine for a short-hard gamma-ray burst (SGRB). Our earlier study of magnetized BHNSs showed that NS tidal disruption winds the magnetic field into a toroidal configuration, with poloidal fields so weak that capturing MRI with full-disk simulations would require CPU-hours. In that study we imposed equatorial symmetry, suppressing poloidal magnetic fields that might be generated from plasma crossing the orbital plane. Here we show that initial conditions that break this symmetry (i.e., {\it tilted} poloidal magnetic fields in the NS) generate much stronger poloidal fields in the disk, indicating that asymmetric initial conditions may be necessary for establishing BHNS mergers as SGRB progenitors via fully general relativistic MHD simulations. We demonstrate that BHNS mergers may form an SGRB engine under the right conditions by seeding the remnant disk from an unmagnetized BHNS simulation with purely poloidal fields dynamically unimportant initially, but strong enough to resolve MRI. Magnetic turbulence occurs in the disk, driving accretion and supporting Poynting-dominated jet outflows sufficient to power an SGRB.
Matches published version; 6 pages, 3 figures
References in corpus (11)
- Producing ultra-strong magnetic fields in neutron star mergers
- The Influence of Magnetic Field Geometry on the Evolution of Black Hole Accretion Flows: Similar Disks, Drastically Different Jets
- Magnetized Neutron Star Mergers and Gravitational Wave Signals
- Accurate evolutions of inspiralling and magnetized neutron-stars: equal-mass binaries
- General relativistic simulations of magnetized binary neutron star mergers
- Fully General Relativistic Simulations of Black Hole-Neutron Star Mergers
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- Magnetorotational collapse of massive stellar cores to neutron stars: Simulations in full general relativity
- Mergers of Magnetized Neutron Stars with Spinning Black Holes: Disruption, Accretion and Fallback
- Hydromagnetic Instabilities in Neutron Stars
- General Relativistic, Neutrino-Assisted MHD winds - Theory and Application to GRBs. I. Schwarzschild Geometry
Cited by in corpus (33)
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- The Masses and Spins of Neutron Stars and Stellar-Mass Black Holes
- Post-merger evolution of a neutron star-black hole binary with neutrino transport
- Relativistic simulations of black hole-neutron star coalescence: the jet emerges
- Black hole-neutron star mergers at realistic mass ratios: Equation of state and spin orientation effects
- Neutron star-black hole mergers with a nuclear equation of state and neutrino cooling: Dependence in the binary parameters
- General relativistic simulations of compact binary mergers as engines of short gamma-ray bursts
- Binary Black-Hole Mergers in Magnetized Disks: Simulations in Full General Relativity
- Black hole-neutron star binary merger: Dependence on black hole spin orientation and equations of state
- Accretion disks around binary black holes of unequal mass: GRMHD simulations of postdecoupling and merger
- General-relativistic neutrino-radiation magnetohydrodynamic simulation of seconds-long black hole-neutron star mergers
- GRMHD simulations of prompt-collapse neutron star mergers: the absence of jets
- Coalescence of black hole--neutron star binaries
- Effects of spin on magnetized binary neutron star mergers and jet launching
- Jet Launching from Binary Neutron Star Mergers: Incorporating Neutrino Transport and Magnetic Fields
- On accretion disks formed in MHD simulations of black hole-neutron star mergers with accurate microphysics
- Interaction of misaligned magnetospheres in the coalescence of binary neutron stars
- General-relativistic neutrino-radiation magnetohydrodynamics simulation of seconds-long black hole-neutron star mergers: Dependence on initial magnetic field strength, configuration, and neutron-star equation of state
- Multimessenger Binary Mergers Containing Neutron Stars: Gravitational Waves, Jets, and -Ray Bursts
- Properties of the remnant disk and the dynamical ejecta produced in low-mass black hole-neutron star mergers
- Impact of a mean field dynamo on neutron star mergers leading to magnetar remnants
- Jet Launching from Merging Magnetized Binary Neutron Stars with Realistic Equations of State
- Great Impostors: Extremely Compact, Merging Binary Neutron Stars in the Mass Gap Posing as Binary Black Holes
- Addition of tabulated equation of state and neutrino leakage support to IllinoisGRMHD
- Jetlike structures in low-mass binary neutron star merger remnants
- Initial data for black hole-neutron star binaries, with rotating stars
- Postmerger multimessenger analysis of binary neutron stars: Effect of the magnetic field strength and topology
- Black hole pulsars and monster shocks as outcomes of black hole--neutron star mergers
- Black hole-neutron star mergers with massive neutron stars in numerical relativity
- Magnetic Ergostars, Jet Formation and Gamma-Ray Bursts: Ergoregions versus Horizons
- Black Hole - Neutron Star Binary Mergers: The Imprint of Tidal Deformations and Debris
- Black Hole-Neutron Star Binaries near Neutron Star Disruption Limit in the Mass Regime of Event GW230529
- Multimessenger Signatures of Tilted, Self-Gravitating, Black Hole Disks