Relativistic fluid dynamics: physics for many different scales
arXiv:2008.12069 · doi:10.1007/s41114-021-00031-6
Abstract
The relativistic fluid is a highly successful model used to describe the dynamics of many-particle systems moving at high velocities and/or in strong gravity. It takes as input physics from microscopic scales and yields as output predictions of bulk, macroscopic motion. By inverting the process-e.g., drawing on astrophysical observations-an understanding of relativistic features can lead to insight into physics on the microscopic scale. Relativistic fluids have been used to model systems as "small" as colliding heavy ions in laboratory experiments, and as large as the Universe itself, with "intermediate" sized objects like neutron stars being considered along the way. The purpose of this review is to discuss the mathematical and theoretical physics underpinnings of the relativistic (multi-) fluid model. We focus on the variational principle approach championed by Brandon Carter and collaborators, in which a crucial element is to distinguish the momenta that are conjugate to the particle number density currents. This approach differs from the "standard" text-book derivation of the equations of motion from the divergence of the stress-energy tensor in that one explicitly obtains the relativistic Euler equation as an "integrability" condition on the relativistic vorticity. We discuss the conservation laws and the equations of motion in detail, and provide a number of (in our opinion) interesting and relevant applications of the general theory. The formalism provides a foundation for complex models, e.g., including electromagnetism, superfluidity and elasticity-all of which are relevant for state of the art neutron-star modelling.
Update of invited review for Living Reviews in Relativity, original version from 2007. Substantial revision just under 250 pages with about 450 references. Comments welcome
References in corpus (71)
- Multi-messenger Observations of a Binary Neutron Star Merger
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Building an AdS/CFT superconductor
- Color superconductivity in dense quark matter
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- Theory of Core-Collapse Supernovae
- Relativistic viscous hydrodynamics, conformal invariance, and holography
- Viscosity, Black Holes, and Quantum Field Theory
- Bose-Einstein Condensation of Dark Matter Axions
- Rapid Cooling of the Neutron Star in Cassiopeia A Triggered by Neutron Superfluidity in Dense Matter
- Gravity & Hydrodynamics: Lectures on the fluid-gravity correspondence
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Kilonova Light Curves from the Disk Wind Outflows of Compact Object Mergers
- Relativistic cosmology and large-scale structure
- Dissipative relativistic fluid dynamics: a new way to derive the equations of motion from kinetic theory
- Testing Approximations of Thermal Effects in Neutron Star Merger Simulations
- Neutron conduction in the inner crust of a neutron star in the framework of the band theory of solids
- Neutron Star Asteroseismology. Axial Crust Oscillations in the Cowling Approximation
- Generalized Ohm's law for relativistic plasmas
- The Status of Multi-Dimensional Core-Collapse Supernova Models
- Cosmology with inhomogeneous magnetic fields
- Properties of hypermassive neutron stars formed in mergers of spinning binaries
- Relativistic simulations of black hole-neutron star coalescence: the jet emerges
- Predictions from an anisotropic inflationary era
- Universal hydrodynamics of non-conformal branes
- Accurate simulations of the dynamical bar-mode instability in full General Relativity
- Inflationary perturbations in anisotropic backgrounds and their imprint on the CMB
- Dynamics and Gravitational Wave Signature of Collapsar Formation
- Tests of the nuclear equation of state and superfluid and superconducting gaps using the Cassiopeia A neutron star
- The quantum mechanics of perfect fluids
- Mergers of Magnetized Neutron Stars with Spinning Black Holes: Disruption, Accretion and Fallback
- Cooling of Accretion-Heated Neutron Stars
- Rotating Collapse of Stellar Iron Cores in General Relativity
- Bianchi Model CMB Polarization and its Implications for CMB Anomalies
- A generalized Damour-Navier-Stokes equation applied to trapping horizons
- An introduction to relativistic hydrodynamics
- The inertia of heat and its role in the dynamics of dissipative collapse
- Thermal Dynamics in General Relativity
- When the entropy has no maximum: A new perspective on the instability of the first-order theories of dissipation
- The entrainment matrix of a superfluid neutron-proton mixture at a finite temperature
- Two-dimensional MHD simulations of relativistic magnetic reconnection
- Temperature-dependent pulsations of superfluid neutron stars
- Effects of spin on magnetized binary neutron star mergers and jet launching
- The Fluid/Gravity Correspondence: a new perspective on the Membrane Paradigm
- Stable First-order Particle-frame Relativistic Hydrodynamics for Dissipative Systems
- Entrainment in Superfluid Neutron Star Crusts: Hydrodynamic Description and Microscopic Origin
- Magnetically-dominated jets inside collapsing stars as a model for gamma-ray bursts and supernova explosions
- Relativistic mechanics of neutron superfluid in (magneto) elastic star crust
- Generalized Relativistic Magnetohydrodynamic Equations for Pair and Electron-Ion Plasmas
- Magnetohydrodynamics in stationary and axisymmetric spacetimes: a fully covariant approach
- The relativistic entrainment matrix of a superfluid nucleon-hyperon mixture. II. Effect of finite temperatures
- Rogues' gallery: the full freedom of the Bianchi CMB anomalies
- Axial quasi-normal modes of neutron stars: Accounting for the superfluid in the crust
- Tkachenko modes as sources of quasiperiodic pulsar spin variations
- Dissipative String Fluids
- Temperature effects in pulsating superfluid neutron stars
- Relativistic transport theory for simple fluids at first order in the gradients: a stable picture
- Dissipative relativistic magnetohydrodynamics of a multicomponent mixture and its application to neutron stars
- On the nature of the so-called generic instabilities in dissipative relativistic hydrodynamics
- Tkachenko modes in rotating neutron stars: the effect of compressibility and implications for pulsar timing noise
- An anisotropic, non-singular early universe model leading to a realistic cosmology
- Thermodynamics of magnetized binary compact objects
- The Rayleigh-Brillouin Spectrum in Special Relativistic Hydrodynamics
- Newtonian mechanics of neutron superfluid in elastic star crust
- Averaging anisotropic cosmologies
- Superfluid dynamics in neutron star crusts: the Iordanskii force and chemical gauge covariance
- Radiative pulsar magnetospheres: aligned rotator
- Propagation of Electromagnetic Waves in Resistive Pair Plasma and Causal Relativistic Magnetohydrodynamics
- Linearizing a Non-linear Formulation for General Relativistic Dissipative Fluids
- String Fluid in Local Equilibrium
- Noether and Belinfante stress-energy tensors for theories with arbitrary Lagrangians of tensor fields
Cited by in corpus (48)
- Formulating bulk viscosity for neutron star simulations
- Quasi-equilibrium configurations of binary systems of dark matter admixed neutron stars
- Anisotropic quark stars in gravity
- Causal, stable first-order viscous relativistic hydrodynamics with ideal gas microphysics
- A covariant approach to relativistic large-eddy simulations: The fibration picture
- The I-Love-Q Relations for Superfluid Neutron Stars
- Radial Mode Stability of Two-Fluid Neutron Stars
- Dynamical tides in superfluid neutron stars
- Effective Field Theory for Spontaneously Broken Symmetry
- Local temperature in general relativity
- Continuous gravitational wave emission from neutron stars with pinned superfluids in the core
- Stability of interlinked neutron vortex and proton flux-tube arrays in a neutron star -- III. Proton feedback
- f-mode oscillations of anisotropic neutron stars in full general relativity
- Premerger phenomena in neutron-star binary coalescences
- The physics of non-ideal general relativistic magnetohydrodynamics
- Kinematic and energy properties of dynamical regular black holes
- Relativistic Lagrangian model of a nematic liquid crystal interacting with an electromagnetic field
- Generalized unimodular gravity as a form of k-essence
- Perturbations of relativistic dissipative stars
- High-order Discontinuous Galerkin hydrodynamics with sub-cell shock capturing on GPUs
- Transport coefficients of magnetized neutron star cores
- High priority targets for transient gravitational waves from glitching pulsars
- Determining all thermodynamic transport coefficients for an interacting large N quantum field theory
- Phenomenological Relativistic Second-Order Hydrodynamics for Multiflavor Fluids
- Nonradial oscillations of stratified neutron stars with solid crusts: Mode characterization and tidal resonances in coalescing binaries
- Transport Coefficients of relativistic matter: A detailed formalism with a gross knowledge of their magnitude
- Neutron-star seismology with realistic, finite-temperature nuclear matter
- Covariant approach to relativistic large-eddy simulations: Lagrangian filtering
- Classical and Quantum Dynamics of Gyroscopic Systems and Dark Energy
- New modeling for hybrid stars with an elastic quark core
- Diffusion in superfluid Fermi mixtures: General formalism
- Vortex pinning in the superfluid core of relativistic neutron stars
- Love-C relations for elastic hybrid stars
- Higher-level large-eddy filtering strategy for general relativistic fluid simulations
- Temperature upper bound of an ideal gas
- Steady heat conduction in general relativity
- Local magneto-shear instability in Newtonian gravity
- Local invariants of divergence-free webs
- Particle Production Scenario in an Algebraically Coupled Quintessence Field with a Dark Matter Fluid
- Thermal aspects of neutron star mergers
- Relativistic Dispersion Spectra across Lorentz boosted frames: Spurious modes and the enigma of causality
- Correspondences between scalar field and fluid fluctuations in curved spacetime
- Dominant Energy Condition and dissipative fluids in general relativity
- Einstein, tea leaves, meandering rivers, and the origin of supermassive black holes in ekpyrotic universe
- Dissipative superfluid relativistic magnetohydrodynamics of a multicomponent fluid: the combined effect of particle diffusion and vortices
- The Cosmological Dipole in Tilted Anisotropic Universes
- Guiding center hydrodynamics with spin
- Nonrelativistic superfluids in cosmology from a relativistic approach: Revisiting two formulations of superfluidity