Black Hole-Neutron Star Mergers with a Hot Nuclear Equation of State: Outflow and Neutrino-Cooled Disk for a Low-Mass, High-Spin Case
arXiv:1304.3384 · doi:10.1088/0004-637X/776/1/47
Abstract
Neutrino emission significantly affects the evolution of the accretion tori formed in black hole-neutron star mergers. It removes energy from the disk, alters its composition, and provides a potential power source for a gamma-ray burst. To study these effects, simulations in general relativity with a hot microphysical equation of state and neutrino feedback are needed. We present the first such simulation, using a neutrino leakage scheme for cooling to capture the most essential effects and considering a moderate mass (1.4 M_{\odot} neutron star, 5.6 M_{\odot} black hole), high spin (black hole J/M^2=0.9) system with the K_0=220 MeV Lattimer-Swesty equation of state. We find that about 0.08 M_{\odot} of nuclear matter is ejected from the system, while another 0.3 M_{\odot} forms a hot, compact accretion disk. The primary effects of the escaping neutrinos are (i) to make the disk much denser and more compact, (ii) to cause the average electron fraction Y_e of the disk to rise to about 0.2 and then gradually decrease again, and (iii) to gradually cool the disk. The disk is initially hot (T~6 MeV) and luminous in neutrinos (L_ν~10^{54} erg s^{-1}), but the neutrino luminosity decreases by an order of magnitude over 50 ms of post-merger evolution.
Included erratum to the end of the article: affected average neutrino energy estimates
References in corpus (13)
- Shapiro delay measurement of a two solar mass neutron star
- Opacities and Spectra of the r-process Ejecta from Neutron Star Mergers
- Neutrino signatures and the neutrino-driven wind in Binary Neutron Star Mergers
- Measurement of the Radius of Neutron Stars with High S/N Quiescent Low-mass X-ray Binaries in Globular Clusters
- Reducing orbital eccentricity in binary black hole simulations
- Black hole-neutron star mergers at realistic mass ratios: Equation of state and spin orientation effects
- Extracting equation of state parameters from black hole-neutron star mergers: aligned-spin black holes and a preliminary waveform model
- Anisotropic mass ejection from black hole-neutron star binaries: Diversity of electromagnetic counterparts
- Black Hole Spin Evolution: Implications for Short-hard Gamma Ray Bursts and Gravitational Wave Detection
- Neutrino pair annihilation near accreting, stellar-mass black holes
- Dynamical Excision Boundaries in Spectral Evolutions of Binary Black Hole Spacetimes
- Massive disk formation in the tidal disruption of a neutron star by a nearly extremal black hole
- Dynamical Capture Binary Neutron Star Mergers
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- Electromagnetic Counterparts to Structured Jets from Gravitational Wave Detected Mergers
- Neutron star-black hole mergers with a nuclear equation of state and neutrino cooling: Dependence in the binary parameters
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- General relativistic simulations of compact binary mergers as engines of short gamma-ray bursts
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
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- Dynamical ejecta from precessing neutron star-black hole mergers with a hot, nuclear-theory based equation of state
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