Post-merger evolution of a neutron star-black hole binary with neutrino transport
arXiv:1502.04146 · doi:10.1103/PhysRevD.91.124021
Abstract
We present a first simulation of the post-merger evolution of a black hole-neutron star binary in full general relativity using an energy-integrated general relativistic truncated moment formalism for neutrino transport. We describe our implementation of the moment formalism and important tests of our code, before studying the formation phase of a disk after a black hole-neutron star merger. We use as initial data an existing general relativistic simulation of the merger of a neutron star of 1.4 solar mass with a black hole of 7 solar mass and dimensionless spin a/M=0.8. Comparing with a simpler leakage scheme for the treatment of the neutrinos, we find noticeable differences in the neutron to proton ratio in and around the disk, and in the neutrino luminosity. We find that the electron neutrino luminosity is much lower in the transport simulations, and that the remnant is less neutron-rich. The spatial distribution of the neutrinos is significantly affected by relativistic effects. Over the short timescale evolved, we do not observe purely neutrino-driven outflows. However, a small amount of material (3e-4Msun) is ejected in the polar region during the circularization of the disk. Most of that material is ejected early in the formation of the disk, and is fairly neutron rich. Through r-process nucleosynthesis, that material should produce high-opacity lanthanides in the polar region, and could thus affect the lightcurve of radioactively powered electromagnetic transients. We also show that by the end of the simulation, while the bulk of the disk is neutron-rich, its outer layers have a higher electron fraction. As that material would be the first to be unbound by disk outflows on longer timescales, the changes in Ye experienced during the formation of the disk could have an impact on the nucleosynthesis outputs from neutrino-driven and viscously-driven outflows. [Abridged]
29 pages, 25 figures
References in corpus (21)
- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Neutrino-driven winds from neutron star merger remnants
- Neutrino signatures and the neutrino-driven wind in Binary Neutron Star Mergers
- Binary Neutron Star Mergers: Dependence on the Nuclear Equation of State
- Relativistic neutron star merger simulations with non-zero temperature equations of state I. Variation of binary parameters and equation of state
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- Truncated Moment Formalism for Radiation Hydrodynamics in Numerical Relativity
- High resolution numerical-relativity simulations for the merger of binary magnetized neutron stars
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Galactic r-process enrichment by neutron star mergers in cosmological simulations of a Milky Way-mass galaxy
- 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
- Revealing the high-density equation of state through binary neutron star mergers
- Outflows from accretion disks formed in neutron star mergers: effect of black hole spin
- Phase transitions and He-synthesis driven winds in neutrino cooled accretion disks: prospects for late flares in short gamma-ray bursts
- Numerical Relativity and Astrophysics
- The interplay of disk wind and dynamical ejecta in the aftermath of neutron star - black hole mergers
- General relativistic simulations of black hole-neutron star mergers: Effects of tilted magnetic fields
- Neutrino viscosity and drag: impact on the magnetorotational instability in protoneutron stars
- Interaction of misaligned magnetospheres in the coalescence of binary neutron stars
- Axisymmetric Magnetorotational Instability in Viscous Accretion Disks
Cited by in corpus (20)
- Modeling GW170817 based on numerical relativity and its implications
- Kilonovae
- Neutron Star Mergers and Nucleosynthesis of Heavy Elements
- Full Transport Model of GW170817-Like Disk Produces a Blue Kilonova
- Production of the entire range of r-process nuclides by black hole accretion disc outflows from neutron star mergers
- Impact of an improved neutrino energy estimate on outflows in neutron star merger simulations
- General relativistic simulations of compact binary mergers as engines of short gamma-ray bursts
- Imprints of neutrino-pair flavor conversions on nucleosynthesis in ejecta from neutron-star merger remnants
- 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
- Dynamical ejecta from precessing neutron star-black hole mergers with a hot, nuclear-theory based equation of state
- Monte-Carlo closure for moment-based transport schemes in general relativistic radiation hydrodynamics simulations
- A brief overview of black hole-neutron star mergers
- Bimodal Long-Lasting Components in Short Gamma-Ray Bursts: Promising Electromagnetic Counterparts to Neutron Star Binary Mergers
- Measuring neutron star tidal deformability with Advanced LIGO: a Bayesian analysis of neutron star - black hole binary observations
- : Radiation GRMHD for Neutrino-Driven Accretion Flows
- Beyond moments: relativistic Lattice-Boltzmann methods for radiative transport in computational astrophysics
- Multi-Frequency General Relativistic Radiation-Hydrodynamics with Closure
- Initial data for black hole-neutron star binaries, with rotating stars
- CAFE-R a code that solves the special relativistic radiation hydrodynamics equations