Neutrino Transfer in Three Dimensions for Core-Collapse Supernovae. I. Static Configurations
arXiv:1201.2244 · doi:10.1088/0067-0049/199/1/17
Abstract
We develop a numerical code to calculate the neutrino transfer with multi-energy and multi-angle in three dimensions (3D) for the study of core-collapse supernovae. The numerical code solves the Boltzmann equations for neutrino distributions by the discrete-ordinate (S_n) method with a fully implicit differencing for time advance. The Boltzmann equations are formulated in the inertial frame with collision terms being evaluated to the zeroth order of v/c. A basic set of neutrino reactions for three neutrino species is implemented together with a realistic equation of state of dense matter. The pair process is included approximately in order to keep the system linear. We present numerical results for a set of test problems to demonstrate the ability of the code. The numerical treatments of advection and collision terms are validated first in the diffusion and free streaming limits. Then we compute steady neutrino distributions for a background extracted from a spherically symmetric, general relativistic simulation of 15Msun star and compare them with the results in the latter computation. We also demonstrate multi-D capabilities of the 3D code solving neutrino transfers for artificially deformed supernova cores in 2D and 3D. Formal solutions along neutrino paths are utilized as exact solutions. We plan to apply this code to the 3D neutrino-radiation hydrodynamics simulations of supernovae. This is the first article in a series of reports on the development.
99 pages, 38 figures, accepted for publication in ApJS
References in corpus (7)
- Theory of Core-Collapse Supernovae
- Delayed neutrino-driven supernova explosions aided by the standing accretion-shock instability
- Pulsar spins from an instability in the accretion shock of supernovae
- The isotropic diffusion source approximation for supernova neutrino transport
- Linear growth of spiral SASI modes in core-collapse supernovae
- Modeling core collapse supernovae in 2 and 3 dimensions with spectral neutrino transport
- Exploring Hadron Physics in Black Hole Formations: a New Promising Target of Neutrino Astronomy
Cited by in corpus (76)
- Explosion Mechanisms of Core-Collapse Supernovae
- Binary neutron-star mergers: a review of Einstein's richest laboratory
- An Open-Source Neutrino Radiation Hydrodynamics Code for Core-Collapse Supernovae
- General-Relativistic Simulations of Three-Dimensional Core-Collapse Supernovae
- On the occurrence of fast neutrino flavor conversions in multidimensional supernova models
- A New Multi-Energy Neutrino Radiation-Hydrodynamics Code in Full General Relativity and Its Application to Gravitational Collapse of Massive Stars
- Fully General Relativistic Simulations of Core-Collapse Supernovae with An Approximate Neutrino Transport
- Magnetorotational Explosion of A Massive Star Supported by Neutrino Heating in General Relativistic Three Dimensional Simulations
- Beyond second-order convergence in simulations of magnetised binary neutron stars with realistic microphysics
- A New Monte Carlo Method for Time-Dependent Neutrino Radiation Transport
- Three-dimensional Boltzmann-Hydro code for core-collapse in massive stars I. special relativistic treatments
- On the Impact of Three Dimensions in Simulations of Neutrino-Driven Core-Collapse Supernova Explosions
- Simulations of core-collapse supernovae in spatial axisymmetry with full Boltzmann neutrino transport
- Fast Neutrino Flavor Conversion Modes in Multidimensional Core-collapse Supernova Models: the Role of the Asymmetric Neutrino Distributions
- Fast-pairwise collective neutrino oscillations associated with asymmetric neutrino emissions in core-collapse supernova
- Three-Dimensional Core-Collapse Supernova Simulations with Multi-Dimensional Neutrino Transport Compared to the Ray-by-Ray-plus Approximation
- One-, Two-, and Three-dimensional Simulations of Oxygen Shell Burning Just Before the Core-Collapse of Massive Stars
- On the Importance of the Equation of State for the Neutrino-Driven Supernova Explosion Mechanism
- A New Spherical Harmonics Scheme for Multi-Dimensional Radiation Transport I: Static Matter Configurations
- Conservative 3+1 General Relativistic Variable Eddington Tensor Radiation Transport Equations
- An Implicit Finite Volume Scheme to Solve the Time Dependent Radiation Transport Equation Based on Discrete Ordinates
- A Detailed Comparison of Multi-Dimensional Boltzmann Neutrino Transport Methods in Core-Collapse Supernovae
- Multimessengers from core-collapse supernovae: multidimensionality as a key to bridge theory and observation
- Three-dimensional Boltzmann-Hydro code for core-collapse in massive stars II. The Implementation of moving-mesh for neutron star kicks
- Chiral effects in astrophysics and cosmology
- An advanced leakage scheme for neutrino treatment in astrophysical simulations
- Analytic Closures for M1 Neutrino Transport
- Towards an Understanding of the Resolution Dependence of Core-Collapse Supernova Simulations
- Prospects of fast flavor neutrino conversion in rotating core-collapse supernovae
- Searching for Fast Neutrino Flavor Conversion Modes in Core-collapse Supernova Simulations
- Impacts of Rotation on Three-dimensional Hydrodynamics of Core-collapse Supernovae
- Comparing treatments of weak reactions with nuclei in simulations of core-collapse supernovae
- Long-term Simulations of Multi-Dimensional Core-collapse Supernovae: Implications for Neutron Star Kicks
- Multi-dimensional Features of Neutrino Transfer in Core-Collapse Supernovae
- Conservative 3+1 General Relativistic Boltzmann Equation
- Core-collapse supernovae in the hall of mirrors. A three-dimensional code-comparison project
- Neutrino emissions in all flavors up to the pre-bounce of massive stars and the possibility of their detections
- On the Neutrino Distributions in Phase Space for the Rotating Core-collapse Supernova Simulated with a Boltzmann-neutrino-radiation-hydrodynamics Code
- Simulations of the Early Post-Bounce Phase of Core-Collapse Supernovae in Three-Dimensional Space with Full Boltzmann Neutrino Transport
- Universality of the Neutrino Collisional Flavor Instability in Core Collapse Supernovae
- Three-Dimensional Boltzmann-Hydro Code for core-collapse in massive stars III. A New method for momentum feedback from neutrino to matter
- Insights into non-axisymmetric instabilities in three-dimensional rotating supernova models with neutrino and gravitational-wave signatures
- The Boltzmann-radiation-hydrodynamics Simulations of Core-collapse Supernovae with Different Equations of State: the Role of Nuclear Composition and the Behavior of Neutrinos
- Chiral Radiation Transport Theory of Neutrinos
- Protoneutron Star Convection Simulated with a New General Relativistic Boltzmann Neutrino Radiation-Hydrodynamics Code
- Two-dimensional numerical study for magnetic field dependence of neutrino-driven core-collapse supernova models
- Revisiting Impacts of Nuclear Burning for Reviving Weak Shocks in Neutrino-Driven Supernovae
- A Novel Multi-Dimensional Boltzmann Neutrino Transport Scheme for Core-Collapse Supernovae
- MODA: a new algorithm to compute optical depths in multi-dimensional hydrodynamic simulations
- Rank-3 Moment Closures in General Relativistic Neutrino Transport
- General-relativistic radiation transport scheme in I: Implementation of two-moment based multi-frequency radiative transfer and code tests
- Gravitational Wave Signatures of Hyperaccreting Collapsar Disks
- Multidimensional Boltzmann Neutrino Transport Code in Full General Relativity for Core-collapse Simulations
- Detectability of Collective Neutrino Oscillation Signatures in the Supernova Explosion of a 8.8 star
- Properties of neutrino transfer in a deformed remnant of neutron star merger
- NADA-FLD: A General Relativistic, Multi-dimensional Neutrino-hydrodynamics Code Employing Flux-limited Diffusion
- General relativistic neutrino transport using spectral methods
- A DG-IMEX method for two-moment neutrino transport: Nonlinear solvers for neutrino-matter coupling
- Flavor conversions with energy-dependent neutrino emission and absorption
- Magnetic field induced neutrino chiral transport near equilibrium
- Knudsen number dependence of 2D single-mode Rayleigh-Taylor fluid instabilities
- A Finite Element Method for Angular Discretization of the Radiation Transport Equation on Spherical Geodesic Grids
- thornado-hydro: a discontinuous Galerkin method for supernova hydrodynamics with nuclear equations of state
- Hydrodynamic Shock Wave Studies within a Kinetic Monte Carlo Approach
- Neutrino Acceleration by Bulk Matter Motion and Explosion Mechanism of Gamma-Ray Bursts
- Principal-Axis Analysis of the Eddington Tensor for the Early Post-Bounce Phase of Rotational Core-Collapse Supernovae
- Diagnosing electron-neutrino lepton number crossings in core-collapse supernovae: A comparison of methods
- Deep Learning of the Eddington Tensor in the Core-collapse Supernova Simulation
- Advection Algorithms for Quantum Neutrino Moment Transport
- Equation of state and neutrino transfer in supernovae and neutron stars
- A Parametric Study of the Acoustic Mechanism for Core-Collapse Supernovae
- Electron-neutrino lepton number crossings: Variations with the supernova core physics
- Kinetic Simulations of Rayleigh-Taylor Instabilities
- Asymmetric emissions of neutrinos in the cooling of rotating proto-neutron stars
- Numerical modeling of core-collapse supernovae and compact objects
- Non-Newtonian corrections to radiative viscosity: Israel-Stewart theory as a viscosity limiter