Remarks concerning bulk viscosity of hadron matter in relaxation time ansatz
arXiv:1204.5855 · doi:10.1016/j.nuclphysa.2013.07.008
Abstract
The bulk viscosity is calculated for hadron matter produced in heavy-ion collisions, being described in the relaxation time approximation withi n the relativistic mean- field-based model with scaled hadron masses and couplings. W e show how different approximations used in the literature affect the result. Nume rical evaluations of the bulk viscosity with three considered models deviate not much from each other confirming earlier results.
17 pages, 3 figures
References in corpus (11)
- Quasi-Particle Theory of Shear and Bulk Viscosities of Hadronic Matter
- Bulk viscosity in quasi particle models
- Shear and bulk viscosities of the gluon plasma in a quasiparticle description
- Viscosity coefficients for hadron and quark-gluon phases
- Shear Viscosity of a Hot Pion Gas
- Relativistic Dissipative Hydrodynamic Equations at the Second Order for Multi-Component Systems with Multiple Conserved Currents
- Equation of State for Hot and Dense Matter: -- Model with Scaled Hadron Masses and Couplings
- Relativistic Mean-Field Model with Scaled Hadron Masses and Couplings
- Shear and bulk viscosities for pure glue matter
- Relaxation time ansatz and shear and bulk viscosities of gluon matter
- Hydrodynamics of Resonances
Cited by in corpus (7)
- Quasiparticle Theory of Transport Coefficients for Hadronic Matter at Finite Temperature and Baryon Density
- Estimating transport coefficients in hot and dense quark matter
- Transport coefficients in Polyakov quark meson coupling model: a relaxation time approximation
- The nucleon thermal width due to pion-baryon loops and its contribution in Shear viscosity
- Structure formation during phase transitions in strongly interacting matter
- Diffusion matrix associated with the diffusion processes of multiple conserved charges in a hot and dense hadronic matter
- Thermoelectric transport coefficients of quark matter