Newtonian hydrodynamics of the coalescence of black holes with neutron stars II: Tidally locked binaries with a soft equation of state
arXiv:astro-ph/9904328 · doi:10.1046/j.1365-8711.1999.02734.x
Abstract
We present a numerical study of the hydrodynamics in the final stages of inspiral of a black hole-neutron star binary, when the binary separation becomes comparable to the stellar radius. We use a Newtonian three-dimensional Smooth Particle Hydrodynamics (SPH) code, and model the neutron star with a soft (adiabatic index Gamma=5/3) polytropic equation of state and the black hole as a Newtonian point mass which accretes matter via an absorbing boundary at the Schwarzschild radius. Our initial conditions correspond to tidally locked binaries in equilibrium, and we have explored configurations with different values of the mass ratio q=Mns/Mbh, ranging from q=1 to q=0.1. The dynamical evolution is followed for approximately 23 ms, and in every case studied here we find that the neutron star is tidally disrupted on a dynamical timescale, forming a dense torus around the black hole that contains a few tenths of a solar mass. A nearly baryon-free axis is present in the system throughout the coalescence, and only modest beaming of a fireball that could give rise to a gamma-ray burst would be sufficient to avoid excessive baryon contamination. We find that some mass (on the order of 0.01 to 0.001 solar masses) may be dynamically ejected from the system, and could thus contribute substantially to the amount of observed r-process material in the galaxy. We calculate the gravitational radiation waveforms and luminosity in the quadrupole approximation.
Accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (41)
- The Progenitors of Short Gamma-Ray Bursts
- Mergers of neutron star black hole binaries with small mass ratios: nucleosynthesis, gamma-ray bursts and electromagnetic transients
- Closing in on a Short-Hard Burst Progenitor: Constraints from Early-Time Optical Imaging and Spectroscopy of a Possible Host Galaxy of GRB 050509b
- High Resolution Calculations of Merging Neutron Stars III: Gamma-Ray Bursts
- Binary Neutron Star Mergers
- Black Hole - Neutron Star Mergers as Central Engines of Gamma-Ray Bursts
- Time-Dependent Models of Accretion Disks Formed from Compact Object Mergers
- Dynamical mass ejection from black hole-neutron star binaries
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Newtonian hydrodynamics of the coalescence of black holes with neutron stars IV: Irrotational binaries with a soft equation of state
- Quasi-periodic accretion and gravitational waves from oscillating "toroidal neutron stars" around a Schwarzschild black hole
- Accretion dynamics in neutron star black hole binaries
- Newtonian Hydrodynamics of the Coalescence of Black Holes with Neutron Stars I: Tidally locked binaries with a stiff equation of state
- Numerical evolutions of a black hole-neutron star system in full General Relativity: I. Head-on collision
- Numerical relativity confronts compact neutron star binaries: a review and status report
- The Dynamical Evolution of Black Hole-Neutron Star Binaries in General Relativity: Simulations of Tidal Disruption
- A compact binary merger model for the short, hard GRB 050509b
- Equation of state effects in black hole-neutron star mergers
- Modeling of Emission Signatures of Massive Black Hole Binaries: I Methods
- Nuclear astrophysics: the unfinished quest for the origin of the elements
- Coalescence of black hole--neutron star binaries
- Mergers of Black Hole -- Neutron Star binaries. I. Methods and First Results
- Accretion disks around black holes: dynamical evolution, meridional circulations and gamma ray bursts
- Relativistic black hole-neutron star binaries in quasiequilibrium: effects of the black hole excision boundary condition
- Quasiequilibrium black hole-neutron star binaries in general relativity
- The ultimate outcome of black hole - neutron star mergers
- Neutrino Spectra from Accretion Disks: Neutrino General Relativistic Effects and the Consequences for Nucleosynthesis
- Black hole-neutron star binaries in general relativity: effects of neutron star spin
- Neutron star tidal disruption in mixed binaries: the imprint of the equation of state
- Post-Newtonian SPH calculations of binary neutron star coalescence. II. Binary mass ratio, equation of state, and spin dependence
- Newtonian hydrodynamics of the coalescence of black holes with neutron stars III: Irrotational binaries with a stiff equation of state
- Quasiequilibrium sequences of black-hole--neutron-star binaries in general relativity
- Linking the rates of neutron star binaries and short gamma-ray bursts
- Measuring neutron star tidal deformability with Advanced LIGO: a Bayesian analysis of neutron star - black hole binary observations
- Prompt Mergers of Neutron Stars with Black Holes
- Detecting neutrinos from black hole neutron stars mergers
- The black hole spin influence on accretion disk neutrino detection
- Black Hole Accretion Disk Diffuse Neutrino Background
- Distortion of Gravitational-Wave Packets Due to their Self-Gravity
- Observational constraints on the nature of very short gamma-ray bursts
- Short gamma-ray bursts and the decompression of neutron star matter in tidal streams