A multi-block infrastructure for three-dimensional time-dependent numerical relativity
arXiv:gr-qc/0602104 · doi:10.1088/0264-9381/23/16/S14
Abstract
We describe a generic infrastructure for time evolution simulations in numerical relativity using multiple grid patches. After a motivation of this approach, we discuss the relative advantages of global and patch-local tensor bases. We describe both our multi-patch infrastructure and our time evolution scheme, and comment on adaptive time integrators and parallelisation. We also describe various patch system topologies that provide spherical outer and/or multiple inner boundaries. We employ penalty inter-patch boundary conditions, and we demonstrate the stability and accuracy of our three-dimensional implementation. We solve both a scalar wave equation on a stationary rotating black hole background and the full Einstein equations. For the scalar wave equation, we compare the effects of global and patch-local tensor bases, different finite differencing operators, and the effect of artificial dissipation onto stability and accuracy. We show that multi-patch systems can directly compete with the so-called fixed mesh refinement approach; however, one can also combine both. For the Einstein equations, we show that using multiple grid patches with penalty boundary conditions leads to a robustly stable system. We also show long-term stable and accurate evolutions of a one-dimensional non-linear gauge wave. Finally, we evolve weak gravitational waves in three dimensions and extract accurate waveforms, taking advantage of the spherical shape of our grid lines.
18 pages. Some clarifications added, figure layout improved
References in corpus (2)
Cited by in corpus (65)
- The Einstein Toolkit: A Community Computational Infrastructure for Relativistic Astrophysics
- Science with the space-based interferometer eLISA. I: Supermassive black hole binaries
- Review of Summation-by-parts schemes for initial-boundary-value problems
- Setting the cornerstone for the IMRPhenomX family of models for gravitational waves from compact binaries: The dominant harmonic for non-precessing quasi-circular black holes
- Compact binary evolutions with the Z4c formulation
- A Survey of High Level Frameworks in Block-Structured Adaptive Mesh Refinement Packages
- GRHydro: A new open source general-relativistic magnetohydrodynamics code for the Einstein Toolkit
- High accuracy binary black hole simulations with an extended wave zone
- Continuum and Discrete Initial-Boundary-Value Problems and Einstein's Field Equations
- New, efficient, and accurate high order derivative and dissipation operators satisfying summation by parts, and applications in three-dimensional multi-block evolutions
- Testing outer boundary treatments for the Einstein equations
- Characteristic extraction in numerical relativity: binary black hole merger waveforms at null infinity
- An Introduction to the Einstein Toolkit
- Numerical Relativity in Spherical Polar Coordinates: Evolution Calculations with the BSSN Formulation
- Gravitational Wave Extraction in Simulations of Rotating Stellar Core Collapse
- Stability of general-relativistic accretion disks
- Three-Dimensional General-Relativistic Hydrodynamic Simulations of Binary Neutron Star Coalescence and Stellar Collapse with Multipatch Grids
- A numerical study of the quasinormal mode excitation of Kerr black holes
- Realistic Finite-Temperature Effects in Neutron Star Merger Simulations
- A Pseudospectral Method for Gravitational Wave Collapse
- The runaway instability in general relativistic accretion disks
- Solving 3D relativistic hydrodynamical problems with WENO discontinuous Galerkin methods
- Modeling Equal and Unequal Mass Binary Neutron Star Mergers Using Public Codes
- Towards absorbing outer boundaries in General Relativity
- On the frequency band of the f-mode CFS instability
- Multi-patch methods in general relativistic astrophysics - I. Hydrodynamical flows on fixed backgrounds
- How far away is far enough for extracting numerical waveforms, and how much do they depend on the extraction method?
- Validity of common modelling approximations for precessing binary black holes with higher-order modes
- Self-force with (3+1) codes: a primer for numerical relativists
- Numerical relativity with characteristic evolution, using six angular patches
- Evolution of the Magnetized, Neutrino-Cooled Accretion Disk in the Aftermath of a Black Hole Neutron Star Binary Merger
- Binary neutron star mergers as a probe of quark-hadron crossover equations of state
- Algebraic Classification of Numerical Spacetimes and Black-Hole-Binary Remnants
- Orbiting binary black hole evolutions with a multipatch high order finite-difference approach
- On the dynamical stability of quasi-toroidal differentially rotating neutron stars
- The second order spin-2 system in flat space near space-like and null-infinity
- Stiffness effects on the dynamics of the bar-mode instability of Neutron Stars in full General Relativity
- The fate of twin stars on the unstable branch: implications for the formation of twin stars
- Solving Partial Differential Equations Numerically on Manifolds with Arbitrary Spatial Topologies
- Improving the convergence order of binary neutron star merger simulations in the Baumgarte-Shapiro-Shibata-Nakamura formulation
- Modeling Mergers of Known Galactic Systems of Binary Neutron Stars
- A hybrid approach to long-term binary neutron-star simulations
- Neutron Star instabilities in full General Relativity using a ideal fluid
- Solving the Einstein constraint equations on multi-block triangulations using finite element methods
- Computational Models of Stellar Collapse and Core-Collapse Supernovae
- Hyperboloidal slices for the wave equation of Kerr-Schild metrics and numerical applications
- Scalar self-force for eccentric orbits around a Schwarzschild black hole
- Parameter estimates in binary black hole collisions using neural networks
- Investigating the migration of immiscible contaminant fluid flow in homogeneous and heterogeneous aquifers with high-precision numerical simulations
- Relativistic gas accretion onto supermassive black Hole binaries from inspiral through merger
- Falloff of the Weyl scalars in binary black hole spacetimes
- Component Specification in the Cactus Framework: The Cactus Configuration Language
- Numerical evolution of plane gravitational waves in the Friedrich-Nagy gauge
- Inside the Final Black Hole: Puncture and Trapped Surface Dynamics
- Exact boundary conditions in numerical relativity using multiple grids: scalar field tests
- Accretion of Supersonic Winds on Boson Stars
- Axisymmetric Hydrodynamics in Numerical Relativity Using a Multipatch Method
- Application of Discrete Differential Forms to Spherically Symmetric Systems in General Relativity
- Long-term impact of the magnetic-field strength on the evolution and electromagnetic emission by neutron-star merger remnants
- Discrete differential forms for cosmological space-times
- A polytopal discrete de Rham complex on manifolds, with application to the Maxwell equations
- -mode oscillations of compact stars with realistic equations of state in dynamical spacetime
- Neutron Star Mergers and the Quark Matter Equation of State
- Summary of GR18 Numerical Relativity parallel sessions (B1/B2 and B2), Sydney, 8-13 July 2007
- A User-Friendly Python Interface for the Numerical Relativity Code AMSS-NCKU