Shear viscosity of pionic and nucleonic components from their different possible mesonic and baryonic thermal fluctuations
arXiv:1507.01705 · doi:10.1007/s13538-015-0352-9
Abstract
Owing to the Kubo relation, the shear viscosities of pionic and nucleonic components have been evaluated from their corresponding retarded correlators of viscous stress tensor in the static limit, which become non-divergent only for the non-zero thermal widths of the constituent particles. In the real-time thermal field theory, the pion and nucleon thermal widths have respectively been obtained from the pion self-energy for different meson, baryon loops and the nucleon self-energy for different pion-baryon loops. We have found a non-monotonic momentum distributions of pion and nucleon thermal widths, which have been integrated out by their respective Bose-enhanced and Pauli-blocked phase space factors during evaluation of their shear viscosities. The viscosity to entropy density ratio for this mixed gas of pion-nucleon system decreases and approaches toward its lower bound as the temperature and baryon chemical potential increase within the relevant domain of hadronic matter.
References in corpus (29)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Viscosity Information from Relativistic Nuclear Collisions: How Perfect is the Fluid Observed at RHIC?
- Viscosity, Black Holes, and Quantum Field Theory
- On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions
- Suppression of elliptic flow in a minimally viscous quark-gluon plasma
- Quasi-Particle Theory of Shear and Bulk Viscosities of Hadronic Matter
- Influence of the shear viscosity of the quark-gluon plasma on elliptic flow in ultrarelativistic heavy-ion collisions
- Anisotropic flow in sqrt(s)=2.76 TeV Pb+Pb collisions at the LHC
- Perturbative QCD Calculations of Elliptic Flow and Shear Viscosity in Au+Au Collisions at GeV
- Scalings of Elliptic Flow for a Fluid at Finite Shear Viscosity
- Shear viscosity of a hadronic gas mixture
- Triangular flow in heavy ion collisions in a multiphase transport model
- QCD Viscosity to Entropy Density Ratio in the Hadronic Phase
- Viscosity coefficients for hadron and quark-gluon phases
- Bulk and shear viscosities of hot and dense hadron gas
- Shear Viscosity of a Hot Pion Gas
- A real-time thermal field theoretical analysis of Kubo-type shear viscosity : Numerical understanding with simple examples
- Shear viscosity due to the Landau damping from quark-pion interaction
- Shear viscosity of pion gas due to and interactions
- Phase Transitions and the Perfectness of Fluids
- The nucleon thermal width due to pion-baryon loops and its contribution in Shear viscosity
- Comparison of results from a 2+1D relativistic viscous hydrodynamic model to elliptic and hexadecapole flow of charged hadrons measured in Au-Au collisions at = 200 GeV
- Effect of spectral modification of on shear viscosity of a pion gas
- Medium effects on the relaxation of dissipative flows in a hot pion gas
- Minimum Shear Viscosity over Entropy Density at Phase Transition? --- A Counterexample
- Relativistic Nuclear Collisions
- and collective flow in chiral hydrodynamics
- Low mass enhanced probability of pion in hadronic matter due to its Landau cut contributions
- Shear viscosity of pion gas
Cited by in corpus (11)
- Electrical conductivity of hadronic matter from different possible mesonic and baryonic thermal fluctuations
- Calculations of Shear, Bulk viscosities and Electrical conductivity in Polyakov-Quark-Meson model
- Dynamics of QCD Matter -- current status
- Transport coefficients in a finite volume Polyakov--Nambu--Jona-Lasinio model
- Finite size effect of hadronic matter on its transport coefficients
- Phenomenological bound on the viscosity of the hadron resonance gas
- Bulk viscosity for pion and nucleon thermal fluctuation in the hadron resonance gas model
- Contribution of Kaon component in viscosity and conductivity of hadronic medium
- Viscous coefficients and thermal conductivity of a gas mixture in the medium
- Transport Coefficients of relativistic matter: A detailed formalism with a gross knowledge of their magnitude
- In-medium effect on the thermodynamics and transport coefficients in van der Waals hadron resonance gas