Hadron resonance gas with repulsive mean field interaction: Thermodynamics and transport properties
arXiv:1907.02199 · doi:10.1103/PhysRevD.100.074015
Abstract
We discuss the interacting hadron resonance gas model to describe the thermodynamics of hadronic matter. While the attractive interaction between hadrons is taken care of by including all the resonances with zero width, the repulsive interactions are included by considering density-dependent mean field potentials. The bulk thermodynamic quantities are confronted with the lattice quantum chromodynamics simulation results at zero as well as at finite baryon chemical potential. We further estimate the shear and bulk viscosity coefficients of hot and dense hadronic matter within the ambit of this interacting hadron resonance gas model.
16 pages, the version to appear in Physical Review D
References in corpus (22)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- The QCD transition temperature: results with physical masses in the continuum limit
- Chiral crossover in QCD at zero and non-zero chemical potentials
- The Phase Structure of the Polyakov--Quark-Meson Model
- The QCD Equation of State to from Lattice QCD
- On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions
- Quasi-Particle Theory of Shear and Bulk Viscosities of Hadronic Matter
- Bulk viscosity of QCD matter near the critical temperature
- Bulk viscosity in quasi particle models
- Bulk viscosity-driven suppression of shear viscosity effects on the flow harmonics at RHIC
- Shear viscosity of a hadronic gas mixture
- Collision Energy Dependence of Viscous Hydrodynamic Flow in Relativistic Heavy-Ion Collisions
- QCD Viscosity to Entropy Density Ratio in the Hadronic Phase
- Viscosity coefficients for hadron and quark-gluon phases
- Multicomponent van der Waals equation of state: Applications in nuclear and hadronic physics
- Transport coefficients in Polyakov quark meson coupling model: a relaxation time approximation
- Quark Flavour Dependence of the Shear Viscosity in a Quasiparticle Model
- Transport properties of a meson gas
- In-medium viscous coefficients of a hot hadronic gas mixture
- Bulk viscosity for pion and nucleon thermal fluctuation in the hadron resonance gas model
- Transport properties of the hot and dense sQGP
- Transport coefficients for multi-component gas of hadrons using Chapman Enskog method
Cited by in corpus (7)
- Interacting hadron resonance gas model in magnetic field and the fluctuations of conserved charges
- Effect of a magnetic field on the thermodynamic properties of a high-temperature hadron resonance gas with van der Waals interactions
- Effects of hadronic repulsive interactions on the fluctuations of conserved charges
- Hadron resonance gas model with repulsive mean-field interactions: specific heat, isothermal compressibility and speed of sound
- Fluidity of the system produced in relativistic pp and heavy-ion collisions: Hadron resonance gas model approach
- Dynamic density correlations in a baryon rich fluid using Mori-Zwanzig-Nakjima projection operator method
- Magneto-Thomson and transverse Thomson effects in an interacting hadron gas in the presence of an external magnetic field