High Resolution Calculations of Merging Neutron Stars I: Model Description and Hydrodynamic Evolution
arXiv:astro-ph/0110180 · doi:10.1046/j.1365-8711.2002.05409.x
Abstract
We present the results of 3D, high-resolution calculations of neutron star mergers. Using Newtonian gravity, but adding the forces from the emission of gravitational waves, we solve the hydrodynamics equations using the smoothed particle hydrodynamics method. The microscopic properties of the neutron star matter are described in terms of a new nuclear equation of state (EOS) based on the tables of Shen et al. (1998). The effects of neutrino emission of all flavours are accounted for. The new EOS is noticeably stiffer than the Lattimer-Swesty-EOS used in previous investigations. We find in general somewhat lower temperatures than previous investigations. This allows a substantial fraction of heavy nuclei to be present even in the inner parts of the torus that forms around the central object and yields important contributions to the neutrino opacity. The central object shows a rapid differential rotation with periods of 2ms, which we suspect to stabilize the central object on (at least) the simulation time scale against gravitational collapse. The differential rotation could wind up initial magnetic fields to G.
numerical viscosity measured, vertical disk structure investigated, comparison with Lattimer-Swesty EOS; MNRAS in press; movies under http://www.star.le.ac.uk/~sro/
References in corpus (10)
- On the Maximum Mass of Differentially Rotating Neutron Stars
- Simulation of merging binary neutron stars in full general relativity: case
- Differential Rotation in Neutron Stars: Magnetic Braking and Viscous Damping
- Fully general relativistic simulation of coalescing binary neutron stars: Preparatory tests
- Coalescing neutron stars - a step towards physical models III. Improved numerics and different neutron star masses and spins
- Axisymmetric Modes of Rotating Relativistic Stars in the Cowling Approximation
- Post-Newtonian SPH calculations of binary neutron star coalescence. I. Method and first results
- Post-Newtonian SPH calculations of binary neutron star coalescence. II. Binary mass ratio, equation of state, and spin dependence
- Post Newtonian SPH
- Nuclear matter properties and relativistic mean-field theory
Cited by in corpus (79)
- The Physics of Gamma-Ray Bursts
- Gamma-Ray Bursts: Progress, Problems & Prospects
- On the astrophysical robustness of neutron star merger r-process
- Producing ultra-strong magnetic fields in neutron star mergers
- Neutron star mergers versus core-collapse supernovae as dominant r-process sites in the early Galaxy
- Neutrino signatures and the neutrino-driven wind in Binary Neutron Star Mergers
- Gamma-Ray Bursts in the Swift Era
- 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
- High Resolution Calculations of Merging Neutron Stars III: Gamma-Ray Bursts
- High Resolution Calculations of Merging Neutron Stars II: Neutrino Emission
- The long-term evolution of neutron star merger remnants - I. The impact of r-process nucleosynthesis
- The Electromagnetic Signals of Compact Binary Mergers
- Binary Neutron Star Mergers
- The gravitational wave burst signal from core collapse of rotating stars
- Relativistic neutron star merger simulations with non-zero temperature equations of state I. Variation of binary parameters and equation of state
- Remnant evolution after a carbon-oxygen white dwarf merger
- The long-term evolution of neutron star merger remnants - II. Radioactively powered transients
- The Dynamics of Binary Neutron Star Mergers and of GW170817
- The multi-messenger picture of compact object encounters: binary mergers versus dynamical collisions
- Fallback accretion in the aftermath of a compact binary merger
- Post-merger evolution of a neutron star-black hole binary with neutrino transport
- Astrophysical Smooth Particle Hydrodynamics
- The structure and fate of white dwarf merger remnants
- On r-process nucleosynthesis from matter ejected in binary neutron starmergers
- Evolving black hole-neutron star binaries in general relativity using pseudospectral and finite difference methods
- Detectability of compact binary merger macronovae
- General relativistic simulations of compact binary mergers as engines of short gamma-ray bursts
- Nuclear Equation of State from Observations of Short Gamma-Ray Burst Remnants
- The Origin of the Heavy Elements: Recent Progress in the Understanding of the r-Process
- MAGMA: a 3D, Lagrangian magnetohydrodynamics code for merger applications
- Short-living supermassive magnetar model for the early X-ray flares following short GRBs
- Accretion dynamics in neutron star black hole binaries
- Jets, winds and bursts from coalescing neutron stars
- The One-Armed Spiral Instability in Neutron Star Mergers and its Detectability in Gravitational Waves
- Black Hole-Neutron Star Mergers with a Hot Nuclear Equation of State: Outflow and Neutrino-Cooled Disk for a Low-Mass, High-Spin Case
- The Science of the Einstein Telescope
- The effects of r-process heating on fall-back accretion in compact object mergers
- Stability of general-relativistic accretion disks
- The Fate of the Compact Remnant in Neutron Star Mergers
- A compact binary merger model for the short, hard GRB 050509b
- On the diversity of short GRBs
- Testing the Magnetar Model via Late Time Radio Observations of Two Macronova Candidates
- The Influence of Quark Matter at High Densities on Binary Neutron Star Mergers
- The Origin of the Prompt Emission for Short GRB 170817A: Photosphere Emission or Synchrotron Emission?
- A case of mistaken identity? GRB 060912A and the nature of the long -- short GRB divide
- The ultimate outcome of black hole - neutron star mergers
- Multimessenger Constraints on Radiatively Decaying Axions from GW170817
- Does the Collapse of a Supramassive Neutron Star Leave a Debris Disk?
- Nonlinear Saturation of g-modes in Proto-Neutron Stars: Quieting the Acoustic Engine
- Heat blanketing envelopes of neutron stars
- Simulating Black Hole White Dwarf Encounters
- A two component jet model for the X-ray afterglow flat segment in short GRB 051221A
- A fast recursive coordinate bisection tree for neighbour search and gravity
- Ab-Initio General-Relativistic Neutrino-Radiation Hydrodynamics Simulations of Long-Lived Neutron Star Merger Remnants to Neutrino Cooling Timescales
- Radiation hydrodynamics modeling of kilonovae with SNEC
- The Electromagnetic Christodoulou Memory Effect and its Application to Neutron Star Binary Mergers
- Rotating neutron stars with non-barotropic thermal profile
- Chemical analysis of CH stars - III: Atmospheric parameters and elemental abundances
- Optical Afterglow Observations of the Unusual Short-Duration Gamma-Ray Burst 040924
- SPHINCS_BSSN: A general relativistic Smooth Particle Hydrodynamics code for dynamical spacetimes
- Neutrino Scattering, Absorption and Annihilation above the accretion disks of Gamma Ray Bursts
- Structured, relativistic jets driven by radiation
- Simulating neutron star mergers with the Lagrangian Numerical Relativity code SPHINCS_BSSN
- Disk formation in the collapse of supramassive neutron stars
- Constraints on Gamma-ray Burst Inner Engines in a Blandford-Znajek Framework
- Neutron star binaries and long duration gamma-ray bursts
- Long-term remnant evolution of compact binary mergers
- Kerr black holes and time profiles of gamma-ray bursts
- Variability in Short Gamma-ray Bursts: Gravitationally Unstable Tidal Tails
- The GW-Universe Toolbox III: simulating joint observations of gravitational waves and gamma-ray bursts
- Afterglows after Swift
- Going out with a bang: compact object collisions resulting from supernovae in binary systems
- Three-dimensional simulations of accretion flow in the progenitor of Tycho's supernova
- Do black holes remember what they are made of?
- Short gamma-ray bursts and the decompression of neutron star matter in tidal streams
- Short Gamma Ray Bursts: marking the birth of black holes from coalescing compact binaries
- Are Interactions with Neutron Star Merger Winds Shaping the Jets?
- Toward a Unified Understanding of the Dense Matter Equation of State