Relativistic hydrodynamical model in the presence of long-range correlations
arXiv:0911.2303 · doi:10.1103/PhysRevC.81.024907
Abstract
Effects of dynamical long-range correlations over a fluid cell size scale on a relativistic fluid are discussed. It is shown that such correlations among the fluid elements introduced into hydrodynamical model induce some weak dissipation and viscosity into the fluid. The influence of the long-range correlations on the entropy current is also discussed.
8 pages; section I and IV are modified; accepted for publication in Physical Review C
References in corpus (15)
- Suppression of elliptic flow in a minimally viscous quark-gluon plasma
- Dissipative Hydrodynamics and Heavy Ion Collisions
- Long Range Correlations and the Soft Ridge in Relativistic Nuclear Collisions
- Stability and Causality in relativistic dissipative hydrodynamics
- The applicability of causal dissipative hydrodynamics to relativistic heavy ion collisions
- Intra-jet correlations of high- hadrons from STAR
- Relativistic Dissipative Hydrodynamics: A Minimal Causal Theory
- Relativistic Dynamics of Non-ideal Fluids: Viscous and heat-conducting fluids II. Transport properties and microscopic description of relativistic nuclear matter
- Dissipative hydrodynamics in 2+1 dimension
- Entropy production in high-energy heavy-ion collisions and the correlation of shear viscosity and thermalization time
- Long range rapidity correlations as seen in the STAR experiment
- Shear viscosity coefficient and relaxation time of causal dissipative hydrodynamics in QCD
- On an exact hydrodynamic solution for the elliptic flow
- Viscosity and the Soft Ridge at RHIC
- Nonextensive/dissipative correspondence in relativistic hydrodynamics
Cited by in corpus (6)
- Fluid dynamical equations and transport coefficients of relativistic gases with non-extensive statistics
- Modification of Eckart theory of relativistic dissipative fluid by introducing extended matching conditions
- Shear viscosity, Bulk viscosity and Relaxation Times of Causal Dissipative Relativistic Fluid-Dynamics at Finite Temperature and Chemical Potential
- Dissipation flow-frames: particle, energy, thermometer
- Off-equilibrium corrections to energy and conserved charge densities in the relativistic fluid in heavy-ion collisions
- Bivelocity picture in the nonrelativistic limit of relativistic hydrodynamics