On accretion disks formed in MHD simulations of black hole-neutron star mergers with accurate microphysics
arXiv:2106.06391 · doi:10.1093/mnras/stab1824
Abstract
Remnant accretion disks formed in compact object mergers are an important ingredient in the understanding of electromagnetic afterglows of multi-messenger gravitational-wave events. Due to magnetically and neutrino driven winds, a significant fraction of the disk mass will eventually become unbound and undergo r-process nucleosynthesis. While this process has been studied in some detail, previous studies have typically used approximate initial conditions for the accretion disks, or started from purely hydrodynamical simulations. In this work, we analyse the properties of accretion disks formed from near equal-mass black hole-neutron star mergers simulated in general-relativistic magnetohydrodynamics in dynamical spacetimes with an accurate microphysical description. The post-merger systems were evolved until for different finite-temperature equations of state and black-hole spins. We present a detailed analysis of the fluid properties and of the magnetic-field topology. In particular, we provide analytic fits of the magnetic-field strength and specific entropy as a function of the rest-mass density, which can be used for the construction of equilibrium disk models. Finally, we evolve one of the systems for a total of after merger and study the prospect for eventual jet launching. While our simulations do not reach this stage, we find clear evidence of continued funnel magnetization and clearing, a prerequisite for any jet-launching mechanism.
17 pages, 14 figures
References in corpus (45)
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- Neutrino-Cooled Accretion Disks around Spinning Black Hole
- ECHO: an Eulerian Conservative High Order scheme for general relativistic magnetohydrodynamics and magnetodynamics
- New Hyperon Equations of State for Supernovae and Neutron Stars in Density-dependent Hadron Field Theory
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- High resolution numerical-relativity simulations for the merger of binary magnetized neutron stars
- Accurate evolutions of inspiralling and magnetized neutron-stars: equal-mass binaries
- General relativistic simulations of magnetized binary neutron star mergers
- Nuclear equation of state for core-collapse supernova simulations with realistic nuclear forces
- Global simulations of axisymmetric radiative black hole accretion disks in general relativity with a sub-grid magnetic dynamo
- Fully General Relativistic Simulations of Black Hole-Neutron Star Mergers
- WhiskyMHD: a new numerical code for general relativistic magnetohydrodynamics
- 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
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- A lower bound on the maximum mass if the secondary in GW190814 was once a rapidly spinning neutron star
- Neutron star-black hole mergers with a nuclear equation of state and neutrino cooling: Dependence in the binary parameters
- Magnetohydrodynamic Simulations of Active Galactic Nucleus Disks and Jets
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Circular orbits and spin in black-hole initial data
- Merger of black hole-neutron star binaries in full general relativity
- Merger of black hole and neutron star in general relativity: Tidal disruption, torus mass, and gravitational waves
- Black hole-neutron star mergers: effects of the orientation of the black hole spin
- Relativistic magnetohydrodynamics in dynamical spacetimes: A new AMR implementation
- Merger of black hole-neutron star binaries: nonspinning black hole case
- Black Hole Spin Evolution: Implications for Short-hard Gamma Ray Bursts and Gravitational Wave Detection
- Optical follow-up of the neutron star-black hole mergers S200105ae and S200115j
- Mergers of Magnetized Neutron Stars with Spinning Black Holes: Disruption, Accretion and Fallback
- The interplay of disk wind and dynamical ejecta in the aftermath of neutron star - black hole mergers
- Gravitational waves from the Papaloizou-Pringle instability in black hole-torus systems
- Binary Neutron Star Mergers and Short Gamma-Ray Bursts: Effects of Magnetic Field Orientation, Equation of State, and Mass Ratio
- Filling the holes: Evolving excised binary black hole initial data with puncture techniques
- A new public code for initial data of unequal-mass, spinning compact-object binaries
- Neutrino transport in black hole-neutron star binaries: neutrino emission and dynamical mass ejection
- Numerical simulations of neutron star-black hole binaries in the near-equal-mass regime
- 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
- The Challenges Ahead for Multimessenger Analyses of Gravitational Waves and Kilonova: a Case Study on GW190425
- Eccentric mergers of black holes with spinning neutron stars
- Fast ejecta as a potential way to distinguish black holes from neutron stars in high-mass gravitational-wave events
- Properties of the remnant disk and the dynamical ejecta produced in low-mass black hole-neutron star mergers
- Black hole-neutron star coalescence: effects of the neutron star spin on jet launching and dynamical ejecta mass
- The heavier the better: how to constrain mass ratios and spins of high-mass neutron-star mergers
- Constraining neutron star radii in black hole-neutron star mergers from their electromagnetic counterparts
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- 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
- Long-term 3D-MHD Simulations of Black Hole Accretion Disks formed in Neutron Star Mergers
- Impact of a mean field dynamo on neutron star mergers leading to magnetar remnants
- Monster Shocks, Gamma-Ray Bursts, and Black Hole Quasi-normal Modes from Neutron-star Collapse
- How Do Spherical Black Holes Grow Monopole Hair?
- Magnetized accretion disks around Kerr black holes with scalar hair -- Nonconstant angular momentum disks
- Geometric and thermodynamic characterization of binary neutron star accretion discs
- Large Eddy Simulations of Magnetized Mergers of Black Holes and Neutron Stars
- Be careful in multi-messenger inference of the Hubble constant: A path forward for robust inference
- Secular Outflows from Long-Lived Neutron Star Merger Remnants
- Implementing a new recovery scheme for primitive variables in the general relativistic magnetohydrodynamic code Spritz
- Black hole pulsars and monster shocks as outcomes of black hole--neutron star mergers
- Impact of anisotropic ejecta on jet dynamics and afterglow emission in binary neutron-star mergers
- Repeated partial disruptions in a WD-NS or WD-BH merger modulate the prompt emission of long-duration merger-type GRBs
- A New Moment-Based General-Relativistic Neutrino-Radiation Transport Code: Methods and First Applications to Neutron Star Mergers
- Fast Neutrino Conversion in Hydrodynamic Simulations of Neutrino-Cooled Accretion Disks
- Luminosity of accretion disks in compact objects with quadrupole