A Novel Multi-Dimensional Boltzmann Neutrino Transport Scheme for Core-Collapse Supernovae
arXiv:2003.02845 · doi:10.1093/mnras/staa1666
Abstract
We introduce a new discrete-ordinate scheme for solving the general relativistic Boltzmann transport equation in the context of core-collapse supernovae. Our algorithm avoids the need to spell out the complicated advection terms in energy and angle that arise when the transport equation is formulated in spherical polar coordinates, in the comoving frame, or in a general relativistic spacetime. We instead approach the problem by calculating the advection of neutrinos across momentum space using an intuitive particle-like approach that has excellent conservation properties and fully accounts for Lorentz boosts, general relativistic effects, and grid geometry terms. In order to avoid the need for a global implicit solution, time integration is performed using a locally implicit Lax-Wendroff scheme that correctly reproduces the diffusion limit. This will facilitate the use of our method on massively parallel distributed-memory architectures. We have verified the accuracy and stability of our scheme with a suite of test problems in spherical symmetry and axisymmetry. To demonstrate that the new algorithm works stably in core-collapse supernova simulations, we have coupled it to the general relativistic hydrodynamics code CoCoNuT and present a first demonstration run of a progenitor with a reduced set of neutrino opacities.
22 pages, 15 figures, accepted for publication in MNRAS
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- Pulsational pair-instability supernovae: gravitational collapse, black-hole formation, and beyond
- The Boltzmann-radiation-hydrodynamics Simulations of Core-collapse Supernovae with Different Equations of State: the Role of Nuclear Composition and the Behavior of Neutrinos
- An Extension of the Athena++ Code Framework for Radiation-Magnetohydrodynamics in General Relativity Using a Finite-Solid-Angle Discretization
- Constructing angular distributions of neutrinos in core collapse supernova from zero-th and first moments calibrated by full Boltzmann neutrino transport
- General-relativistic radiation transport scheme in I: Implementation of two-moment based multi-frequency radiative transfer and code tests
- Multidimensional Boltzmann Neutrino Transport Code in Full General Relativity for Core-collapse Simulations
- The Guided Moments formalism: a new efficient full-neutrino treatment for astrophysical simulations
- Energy-dependent and energy-integrated two-moment general-relativistic neutrino transport simulations of hypermassive neutron star
- A Finite Element Method for Angular Discretization of the Radiation Transport Equation on Spherical Geodesic Grids
- Global high-order numerical schemes for the time evolution of the general relativistic radiation magneto-hydrodynamics equations
- A Black-Hole Excision Scheme for General Relativistic Core-Collapse Supernova Simulations
- A New Moment-Based General-Relativistic Neutrino-Radiation Transport Code: Methods and First Applications to Neutron Star Mergers