GRMHD simulations of prompt-collapse neutron star mergers: the absence of jets
arXiv:1709.00414 · doi:10.1103/PhysRevD.96.084063
Abstract
Inspiraling and merging binary neutron stars are not only important source of gravitational waves, but also promising candidates for coincident electromagnetic counterparts. These systems are thought to be progenitors of short gamma-ray bursts (sGRBs). We have shown previously that binary neutron star mergers that undergo {\it delayed} collapse to a black hole surrounded by a {\it weighty} magnetized accretion disk can drive magnetically-powered jets. We now perform magnetohydrodynamic simulations in full general relativity of binary neutron stars mergers that undergo {\it prompt} collapse to explore the possibility of jet formation from black hole-{\it light} accretion disk remnants. We find that after ms [ is the ADM mass] following prompt black hole formation, there is no evidence of mass outflow or magnetic field collimation. The rapid formation of the black hole following merger prevents magnetic energy from approaching force-free values above the magnetic poles, which is required for the launching of a jet by the usual Blandford--Znajek mechanism. Detection of gravitational waves in coincidence with sGRBs may provide constraints on the nuclear equation of state (EOS): the fate of an NSNS merger--delayed or prompt collapse, and hence the appearance or nonappearance of an sGRB--depends on a critical value of the total mass of the binary, and this value is sensitive to the EOS.
11 pages, 6 figures, matches published version
References in corpus (20)
- Double Compact Objects III: Gravitational Wave Detection Rates
- Merger of binary neutron stars to a black hole: Disk mass, short gamma-ray bursts, and quasinormal mode ringing
- The dynamical mass ejection from binary neutron star mergers: Radiation-hydrodynamics study in general relativity
- The Influence of Magnetic Field Geometry on the Evolution of Black Hole Accretion Flows: Similar Disks, Drastically Different Jets
- High resolution numerical-relativity simulations for the merger of binary magnetized neutron stars
- Reconstructing the neutron-star equation of state with gravitational-wave detectors from a realistic population of inspiralling binary neutron stars
- General relativistic simulations of magnetized binary neutron star mergers
- Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run
- Fully General Relativistic Simulations of Black Hole-Neutron Star Mergers
- Relativistic simulations of black hole-neutron star coalescence: the jet emerges
- Impact of an improved neutrino energy estimate on outflows in neutron star merger simulations
- Evolution of magnetized, differentially rotating neutron stars: Simulations in full general relativity
- 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
- Relativistic magnetohydrodynamics in dynamical spacetimes: A new AMR implementation
- General Relativistic Simulations of Magnetized Plasmas around Merging Supermassive Black Holes
- Binary Neutron Star Mergers and Short Gamma-Ray Bursts: Effects of Magnetic Field Orientation, Equation of State, and Mass Ratio
- General relativistic simulations of black hole-neutron star mergers: Effects of tilted magnetic fields
- Dynamical ejecta from precessing neutron star-black hole mergers with a hot, nuclear-theory based equation of state
- Accretion and Ejection--The GR/MHD View
Cited by in corpus (25)
- Equation of state constraints from the threshold binary mass for prompt collapse of neutron star mergers
- The key role of magnetic fields in binary neutron star mergers
- Systematics of prompt black-hole formation in neutron star mergers
- Magnetohydrodynamic Simulations of Binary Neutron Star Mergers in General Relativity: Effects of Magnetic Field Orientation on Jet Launching
- Effects of spin on magnetized binary neutron star mergers and jet launching
- PIC methods in astrophysics: Simulations of relativistic jets and kinetic physics in astrophysical systems
- Jet Launching from Binary Neutron Star Mergers: Incorporating Neutrino Transport and Magnetic Fields
- A Late-time Radio Survey of Short GRBs at : New Constraints on the Remnants of Neutron Star Mergers
- Multimessenger Binary Mergers Containing Neutron Stars: Gravitational Waves, Jets, and -Ray Bursts
- Gravitational waves from mountains in newly born millisecond magnetars
- Jet Launching from Merging Magnetized Binary Neutron Stars with Realistic Equations of State
- Astrophysical Implications of Neutron Star Inspiral and Coalescence
- Black hole-neutron star coalescence: effects of the neutron star spin on jet launching and dynamical ejecta mass
- Jet-driven and jet-less fireballs from compact binary mergers
- Addition of tabulated equation of state and neutrino leakage support to IllinoisGRMHD
- A short gamma-ray burst from a proto-magnetar remnant
- Equation of state constraints from multi-messenger observations of neutron star mergers
- Jetlike structures in low-mass binary neutron star merger remnants
- Postmerger multimessenger analysis of binary neutron stars: Effect of the magnetic field strength and topology
- Handing off the outcome of binary neutron star mergers for accurate and long-term post-merger simulations
- A Toy Model for the Electromagnetic Output of Neutron-star Merger Prompt Collapse to a Black Hole: Magnetized Neutron-star Collisions
- Magnetic Ergostars, Jet Formation and Gamma-Ray Bursts: Ergoregions versus Horizons
- Chemical Evolution and Kilonova Implications of Post-Merger Accretion Disk Winds
- General relativistic magnetohydrodynamics simulations for binary neutron star mergers
- Gamma-radiation sky maps from compact binaries