Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
arXiv:0812.2245 · doi:10.1103/PhysRevD.79.044024
Abstract
Black hole-neutron star (BHNS) binary mergers are candidate engines for generating both short-hard gamma-ray bursts (SGRBs) and detectable gravitational waves. Using our most recent conformal thin-sandwich BHNS initial data and our fully general relativistic hydrodynamics code, which is now AMR-capable, we are able to efficiently and accurately simulate these binaries from large separations through inspiral, merger, and ringdown. We evolve the metric using the BSSN formulation with the standard moving puncture gauge conditions and handle the hydrodynamics with a high-resolution shock-capturing scheme. We explore the effects of BH spin (aligned and anti-aligned with the orbital angular momentum) by evolving three sets of initial data with BH:NS mass ratio q=3: the data sets are nearly identical, except the BH spin is varied between a/M = -0.5 (anti-aligned), 0.0, and 0.75. The number of orbits before merger increases with a/M, as expected. We also study the nonspinning BH case in more detail, varying q between 1, 3, and 5. We calculate gravitational waveforms for the cases we simulate and compare them to binary black-hole waveforms. Only a small disk (< 0.01 M_sun) forms for the anti-aligned spin case (a/M = -0.5) and for the most extreme mass ratio case (q=5). By contrast, a massive (M_disk is about 0.2 M_sun), hot disk forms in the rapidly spinning (a/M = 0.75) aligned BH case. Such a disk could drive a SGRB,possibly by, e.g., producing a copious flux of neutrino-antineutino pairs.
28 pages, 24 figures, replaced with the published version, minor changes
References in corpus (38)
- Total recoil: the maximum kick from nonspinning black-hole binary inspiral
- Inspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis
- Calibration of Moving Puncture Simulations
- Merger of binary neutron stars to a black hole: Disk mass, short gamma-ray bursts, and quasinormal mode ringing
- High-accuracy waveforms for binary black hole inspiral, merger, and ringdown
- Binary black hole merger dynamics and waveforms
- How to move a black hole without excision: gauge conditions for the numerical evolution of a moving puncture
- Simulating coalescing compact binaries by a new code SACRA
- Exploring black hole superkicks
- General relativistic simulations of magnetized binary neutron star mergers
- Fully General Relativistic Simulations of Black Hole-Neutron Star Mergers
- High-spin binary black hole mergers
- Evolution of magnetized, differentially rotating neutron stars: Simulations in full general relativity
- Formation of Double Compact Objects
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Search for gravitational waves from binary inspirals in S3 and S4 LIGO data
- Magnetorotational collapse of massive stellar cores to neutron stars: Simulations in full general relativity
- The last orbit of binary black holes
- 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
- Merger of black hole-neutron star binaries: nonspinning black hole case
- Waveless Approximation Theories of Gravity
- Relativistic Radiation Magnetohydrodynamics in Dynamical Spacetimes: Numerical Methods and Tests
- Binary black hole late inspiral: Simulations for gravitational wave observations
- Filling the holes: Evolving excised binary black hole initial data with puncture techniques
- Numerical evolutions of a black hole-neutron star system in full General Relativity: I. Head-on collision
- General Relativistic Binary Merger Simulations and Short Gamma Ray Bursts
- Magnetohydrodynamics of Neutrino-Cooled Accretion Tori around a Rotating Black Hole in General Relativity
- Excision without excision: the relativistic turducken
- Mergers of Black Hole -- Neutron Star binaries. I. Methods and First Results
- Relativistic black hole-neutron star binaries in quasiequilibrium: effects of the black hole excision boundary condition
- Magnetorotational collapse of very massive stars to black holes in full general relativity
- Binary black holes on a budget: Simulations using workstations
- Relativistic hydrodynamics in the presence of puncture black holes
- Searching for Gravitational Waves from Binary Inspirals with LIGO
- Detailed comparison of LIGO and Virgo Inspiral Pipelines in Preparation for a Joint Search
- Current status of Japanese detectors
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- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Black Hole-Neutron Star Mergers: Disk Mass Predictions
- Implementing a search for aligned-spin neutron star -- black hole systems with advanced ground based gravitational wave detectors
- The Masses and Spins of Neutron Stars and Stellar-Mass Black Holes
- 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
- Black hole-neutron star mergers: effects of the orientation of the black hole spin
- Relativistic magnetohydrodynamics in dynamical spacetimes: A new AMR implementation
- Black hole-neutron star binary merger: Dependence on black hole spin orientation and equations of state
- Compact Binary Progenitors of Short Gamma-Ray Bursts
- Binary black hole mergers in gaseous disks: Simulations in general relativity
- Mergers of Magnetized Neutron Stars with Spinning Black Holes: Disruption, Accretion and Fallback
- Gravitational waves from the Papaloizou-Pringle instability in black hole-torus systems
- Stability of general-relativistic accretion disks
- Importance of cooling in triggering the collapse of hypermassive neutron stars
- General relativistic simulations of black hole-neutron star mergers: Effects of tilted magnetic fields
- Accurate evolutions of inspiralling neutron-star binaries: assessment of the truncation error
- The runaway instability in general relativistic accretion disks
- Influence of self-gravity on the runaway instability of black hole-torus systems
- Accuracy Issues for Numerical Waveforms
- Head-on collisions of binary white dwarf--neutron stars: Simulations in full general relativity
- Evolution of near-extremal-spin black holes using the moving puncture technique
- Multimessenger astronomy with the Einstein Telescope
- Dynamically formed black hole+millisecond pulsar binaries in globular clusters
- High-frequency behavior of w-mode pulsations of compact stars
- Papaloizou-Pringle Instability of Magnetized Accretion Tori
- Coincidence searches of gravitational waves and short gamma-ray bursts