Multicomponent relativistic dissipative fluid dynamics from the Boltzmann equation
arXiv:2203.11549 · doi:10.1103/PhysRevD.106.036009
Abstract
We derive multicomponent relativistic second-order dissipative fluid dynamics from the Boltzmann equations for a reactive mixture of particle species with intrinsic quantum numbers (e.g. electric charge, baryon number, and strangeness) using the method of moments. We obtain the continuity equations for multiple conserved charges as well as the conservation equations for the total energy and momentum in the single-fluid approximation. These conservation laws are closed by deriving the second-order equations of motion for the dissipative quantities in the -moment approximation. The resulting fluid-dynamical equations are formally similar to those of a single-component system, but feature different thermodynamic relations and transport coefficients. We derive general relations for all transport coefficients and compute them explicitly in the ultrarelativistic limit.
34 pages, 0 figures
References in corpus (3)
Cited by in corpus (24)
- The QCD phase diagram and Beam Energy Scan physics: a theory overview
- Theories of Relativistic Dissipative Fluid Dynamics
- Critical lensing and kurtosis near a critical point in the QCD phase diagram in and out-of-equilibrium
- Hydrodynamic theories for a system of weakly self-interacting classical ultra-relativistic scalar particles: microscopic derivations and attractors
- The regime of applicability of Israel-Stewart hydrodynamics
- Resummed spin hydrodynamics from quantum kinetic theory
- Transport coefficients of second-order relativistic fluid dynamics in the relaxation-time approximation
- Analytical structure of the binary collision integral and the ultrarelativistic limit of transport coefficients of an ideal gas
- Pre-Equilibrium Evolution of Conserved Charges with ICCING Initial Conditions
- Relaxation terms for anomalous hydrodynamic transport in Weyl semimetals from kinetic theory
- Branch-cut in the shear-stress response function of massless with Boltzmann statistics
- Stability of multicomponent Israel-Stewart-Maxwell theory for charge diffusion
- Relativistic second-order dissipative and anisotropic fluid dynamics in the relaxation-time approximation for an ideal gas of massive particles
- Transport coefficients of transient hydrodynamics for the hadron-resonance gas and thermal-mass quasiparticle models
- High-order Shakhov-like extension of the relaxation time approximation in relativistic kinetic theory
- Bulk medium properties of heavy-ion collisions from the beam energy scan with a multistage hydrodynamic model
- Transport Coefficients of relativistic matter: A detailed formalism with a gross knowledge of their magnitude
- Generalized relativistic second-order dissipative hydrodynamics: coupling different rank tensors
- Radial Oscillations of Viscous Neutron Stars: Zero Diffusion Case
- Transport-based initial conditions for heavy-ion collisions at finite densities
- Vortical waves in a quantum fluid with vector, axial and helical charges. II. Dissipative effects
- Relaxation Time Approximation for a multi-species relativistic gas
- Viscous Gubser flow with conserved charges to benchmark fluid simulations
- Fermi-liquid view of viscosity in cold and dense nucleon matter