A New Moment-Based General-Relativistic Neutrino-Radiation Transport Code: Methods and First Applications to Neutron Star Mergers
arXiv:2111.14858 · doi:10.1093/mnras/stac589
Abstract
We present a new moment-based energy-integrated neutrino transport code for neutron star merger simulations in general relativity. In the merger context, ours is the first code to include Doppler effects at all orders in , retaining all nonlinear neutrino-matter coupling terms. The code is validated with a stringent series of tests. We show that the inclusion of full neutrino-matter coupling terms is necessary to correctly capture the trapping of neutrinos in relativistically moving media, such as in differentially rotating merger remnants. We perform preliminary simulations proving the robustness of the scheme in simulating ab-initio mergers to black hole collapse and long-term neutron star remnants up to ms. The latter is the longest dynamical spacetime, 3D, general relativistic simulations with full neutrino transport to date. We compare results obtained at different resolutions and using two different closures for the moment scheme. We do not find evidences of significant out-of-thermodynamic equilibrium effects, such as bulk viscosity, on the postmerger dynamics or gravitational wave emission. Neutrino luminosities and average energies are in good agreement with theory expectations and previous simulations by other groups using similar schemes. We compare dynamical and early wind ejecta properties obtained with M1 and with our older neutrino treatment. We find that the M1 results have systematically larger proton fractions. However, the differences in the nucleosynthesis yields are modest. This work sets the basis for future detailed studies spanning a wider set of neutrino reactions, binaries and equations of state.
24 pages, 27 figures. Correct typos in time integrator and spatial limiter equations
References in corpus (50)
- Neutrino-driven winds from neutron star merger remnants
- Core-Collapse Supernova Explosion Theory
- Calibration of Moving Puncture Simulations
- Neutron Star Mergers and Nucleosynthesis of Heavy Elements
- Neutrino signatures and the neutrino-driven wind in Binary Neutron Star Mergers
- The dynamical mass ejection from binary neutron star mergers: Radiation-hydrodynamics study in general relativity
- Three-dimensional core-collapse supernova simulated using a 15 progenitor
- AT2017gfo: an anisotropic and three-component kilonova counterpart of GW170817
- On the importance of viscous dissipation and heat conduction in binary neutron-star mergers
- Truncated Moment Formalism for Radiation Hydrodynamics in Numerical Relativity
- The Dynamics of Binary Neutron Star Mergers and of GW170817
- THC: a new high-order finite-difference high-resolution shock-capturing code for special-relativistic hydrodynamics
- The isotropic diffusion source approximation for supernova neutrino transport
- Properties of hypermassive neutron stars formed in mergers of spinning binaries
- Self-consistent 3D Supernova Models From -7 Minutes to +7 Seconds: a 1-bethe Explosion of a ~19 Solar-mass Progenitor
- Full Transport Model of GW170817-Like Disk Produces a Blue Kilonova
- Post-merger evolution of a neutron star-black hole binary with neutrino transport
- Impact of an improved neutrino energy estimate on outflows in neutron star merger simulations
- SkyNet: A modular nuclear reaction network library
- Probing the Symmetry Energy with the Spectral Pion Ratio
- General-Relativistic Large-Eddy Simulations of Binary Neutron Star Mergers
- Numerical Relativity Simulations of the Neutron Star Merger GW170817: Long-Term Remnant Evolutions, Winds, Remnant Disks, and Nucleosynthesis
- A New Open-Source Nuclear Equation of State Framework based on the Liquid-Drop Model with Skyrme Interaction
- Fast neutrino flavor conversion, ejecta properties, and nucleosynthesis in newly-formed hypermassive remnants of neutron-star mergers
- Three-dimensional Boltzmann-Hydro code for core-collapse in massive stars I. special relativistic treatments
- Post-merger Mass Ejection of Low-mass Binary Neutron Stars
- A New Spherical Harmonics Scheme for Multi-Dimensional Radiation Transport I: Static Matter Configurations
- The Neutrino Fast Flavor Instability in Three Dimensions
- Monte-Carlo neutrino transport in neutron star merger simulations
- Matter Neutrino Resonance Transitions above a Neutron Star Merger Remnant
- Neutrino absorption and other physics dependencies in neutrino-cooled black-hole accretion disks
- A Detailed Comparison of Multi-Dimensional Boltzmann Neutrino Transport Methods in Core-Collapse Supernovae
- Long-term evolution of neutron-star merger remnants in general relativistic resistive-magnetohydrodynamics with a mean-field dynamo term
- Binary Neutron Star Merger Simulations with a Calibrated Turbulence Model
- Stellar core collapse in full general relativity with microphysics - Formulation and Spherical collapse test -
- Dynamical ejecta synchrotron emission as possible contributor to the changing behaviour of GRB170817A
- Estimating outflow masses and velocities in merger simulations: impact of r-process heating and neutrino cooling
- On accretion disks formed in MHD simulations of black hole-neutron star mergers with accurate microphysics
- : Radiation GRMHD for Neutrino-Driven Accretion Flows
- Beyond moments: relativistic Lattice-Boltzmann methods for radiative transport in computational astrophysics
- Implementation of Monte-Carlo transport in the general relativistic SpEC code
- Multi-Frequency General Relativistic Radiation-Hydrodynamics with Closure
- -process nucleosynthesis from compact binary mergers
- HARM3D+NUC: A new method for simulating the post-merger phase of binary neutron star mergers with GRMHD, tabulated EOS and neutrino leakage
- Rank-3 Moment Closures in General Relativistic Neutrino Transport
- A radiation-hydrodynamics scheme valid from the transport to the diffusion limit
- A DG-IMEX method for two-moment neutrino transport: Nonlinear solvers for neutrino-matter coupling
- Calibration of the Advanced Spectral Leakage scheme for neutron star merger simulations, and extension to smoothed-particle hydrodynamics
- Physical, numerical, and computational challenges of modeling neutrino transport in core-collapse supernovae
- Projecting the likely importance of weak-interaction-driven bulk viscosity in neutron star mergers