Numerical hydrodynamics in general relativity
arXiv:gr-qc/0003101 · doi:10.12942/lrr-2000-2
Abstract
The current status of numerical solutions for the equations of ideal general relativistic hydrodynamics is reviewed. With respect to an earlier version of the article the present update provides additional information on numerical schemes and extends the discussion of astrophysical simulations in general relativistic hydrodynamics. Different formulations of the equations are presented, with special mention of conservative and hyperbolic formulations well-adapted to advanced numerical methods. A large sample of available numerical schemes is discussed, paying particular attention to solution procedures based on schemes exploiting the characteristic structure of the equations through linearized Riemann solvers. A comprehensive summary of astrophysical simulations in strong gravitational fields is presented. These include gravitational collapse, accretion onto black holes and hydrodynamical evolutions of neutron stars. The material contained in these sections highlights the numerical challenges of various representative simulations. It also follows, to some extent, the chronological development of the field, concerning advances on the formulation of the gravitational field and hydrodynamic equations and the numerical methodology designed to solve them.
105 pages, 12 figures. The full online-readable version of this article, including several animations, will be published in Living Reviews in Relativity at http://www.livingreviews.org
References in corpus (9)
- Simulation of merging binary neutron stars in full general relativity: case
- Nucleosynthesis and Clump Formation in a Core Collapse Supernova
- Towards a Stable Numerical Evolution of Strongly Gravitating Systems in General Relativity: The Conformal Treatments
- Fully general relativistic simulation of coalescing binary neutron stars: Preparatory tests
- Nonlinear hydrodynamical evolution of rotating relativistic stars: Numerical methods and code tests
- Stability and collapse of rapidly rotating, supramassive neutron stars: 3D simulations in general relativity
- Revised Relativistic Hydrodynamical Model for Neutron-Star Binaries
- Null cone evolution of axisymmetric vacuum spacetimes
- Analysis of relativistic hydrodynamics in conservation form
Cited by in corpus (50)
- HARM: A Numerical Scheme for General Relativistic Magnetohydrodynamics
- Accurate evolutions of inspiralling neutron-star binaries: prompt and delayed collapse to black hole
- Numerical Relativity: A review
- Three-dimensional general relativistic hydrodynamics II: long-term dynamics of single relativistic stars
- Merger of binary neutron stars of unequal mass in full general relativity
- Simulating binary neutron stars: dynamics and gravitational waves
- The runaway instability of thick discs around black holes. I. The constant angular momentum case
- Quasi-periodic accretion and gravitational waves from oscillating "toroidal neutron stars" around a Schwarzschild black hole
- Axisymmetric general relativistic hydrodynamics: Long-term evolution of neutron stars and stellar collapse to neutron stars and black holes
- Gravitational waves from axisymmetric rotating stellar core collapse to a neutron star in full general relativity
- Departures from the FLRW Cosmological Model in an Inhomogeneous Universe: A Numerical Examination
- PBH formation from spherically symmetric hydrodynamical perturbations: a review
- Dynamics of thick discs around Schwarzschild-de Sitter black holes
- Relativistic fluid dynamics: physics for many different scales
- Hydrodynamic Simulations in 3+1 General Relativity
- The smallest fluid on earth
- General-Relativistic MHD for the Numerical Construction of Dynamical Spacetimes
- Axisymmetric Modes of Rotating Relativistic Stars in the Cowling Approximation
- On the stability of thick accretion disks around black holes
- Integration of inhomogeneous cosmological spacetimes in the BSSN formalism
- Collapse of Rotating Supramassive Neutron Stars to Black Holes: Fully General Relativistic Simulations
- Gravitational waves from axisymmetrically oscillating neutron stars in general relativistic simulations
- Evolution of relativistic polytropes in the post--quasi--static regime
- Axisymmetric core collapse simulations using characteristic numerical relativity
- Mathematical Issues in a Fully-Constrained Formulation of Einstein Equations
- Relativistic gravitational collapse in non-comoving coordinates: The post-quasistatic approximation
- Simulating the dynamics of relativistic stars via a light-cone approach
- A numerical exploration of first-order relativistic hydrodynamics
- General relativistic hydrodynamics in curvilinear coordinates
- Evolutions of Magnetized and Rotating Neutron Stars
- Multi-patch methods in general relativistic astrophysics - I. Hydrodynamical flows on fixed backgrounds
- Probing neutron-star matter in the lab: similarities and differences between binary mergers and heavy-ion collisions
- Scalar field induced oscillations of neutron stars and gravitational collapse
- Conservative finite volume scheme for first-order viscous relativistic hydrodynamics
- Numerical Relativity in Spherical Polar Coordinates: Off-center Simulations
- Characteristic Evolution and Matching
- Physics with Supernovae
- Relativistic wind accretion on to a Schwarzschild black hole
- Long-Term Simulations of Dynamical Ejecta: Homologous Expansion and Kilonova Properties
- First-order quasilinear canonical representation of the characteristic formulation of the Einstein equations
- Study of relativistic accretion flow in Kerr-Taub-NUT spacetime
- Problem-orientable numerical algorithm for modelling multi-dimensional radiative MHD flows in astrophysics -- the hierarchical solution scenario
- Nonlinear evolution and non-uniqueness of scalarized neutron stars
- Phenomenological Relativistic Second-Order Hydrodynamics for Multiflavor Fluids
- Structure formation and quasi-spherical collapse from initial curvature perturbations with numerical relativity simulations
- Numerical simulations of divergence-type theories for conformal dissipative fluids
- Insights into Binary Neutron Star Merger Simulations: A Multi-Code Comparison
- Dynamical Chameleon Neutron Stars: stability, radial oscillations and scalar radiation in spherical symmetry
- Machine learning-driven conservative-to-primitive conversion in hybrid piecewise polytropic and tabulated equations of state
- Dynamics of spherically symmetric spacetimes: hydrodynamics and radiation