Minimum of and the phase transition of the Linear Sigma Model in the large-N limit
arXiv:0907.5483 · doi:10.1103/PhysRevD.80.114015
Abstract
We reexamine the possibility of employing the viscosity over entropy density ratio as a diagnostic tool to identify a phase transition in hadron physics to the strongly coupled quark-gluon plasma and other circumstances where direct measurement of the order parameter or the free energy may be difficult. It has been conjectured that the minimum of eta/s does indeed occur at the phase transition. We now make a careful assessment in a controled theoretical framework, the Linear Sigma Model at large-N, and indeed find that the minimum of eta/s occurs near the second order phase transition of the model due to the rapid variation of the order parameter (here the sigma vacuum expectation value) at a temperature slightly smaller than the critical one.
22 pages, 19 figures, v2, some references and several figures added, typos corrected and certain arguments clarified, revised for PRD
References in corpus (13)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- On the Strongly-Interacting Low-Viscosity Matter Created in Relativistic Nuclear Collisions
- Beyond eta/s = 1/4pi
- Dynamic universality class of the QCD critical point
- Measuring Shear Viscosity Using Transverse Momentum Correlations in Relativistic Nuclear Collisions
- The Shear Viscosity to Entropy Density Ratio of Trapped Fermions in the Unitarity Limit
- Suppression of the Shear Viscosity in a "semi" Quark Gluon Plasma
- The viscosity bound in string theory
- Is a gas of strongly interacting atomic fermions a nearly perfect fluid?
- Phase Transitions and the Perfectness of Fluids
- and Phase Transitions
- Transport coefficients in Chiral Perturbation Theory
- eta/s is critical (at phase transitions)
Cited by in corpus (28)
- Bulk and shear viscosities of matter created in relativistic heavy-ion collisions
- Flow and interferometry in 3+1 dimensional viscous hydrodynamics
- Shear viscosity of a hadron gas and influence of resonance lifetimes on relaxation time
- Description of Hot and Dense Hadron Gas Properties in a New Excluded-Volume model
- D-meson propagation in hot dense matter
- Bulk viscosity and the phase transition of the linear sigma model
- Electrical and thermal conductivities of hot and dense hadron gas
- Medium effects on the viscosities of a pion gas
- SU(3) Polyakov linear-sigma model: Conductivity and viscous properties of QCD matter in thermal medium
- Medium effects on the thermal conductivity of a hot pion gas
- van der Waals hadron resonance gas and QCD phase diagram
- Shear and Bulk Viscosities of a Gluon Plasma in Perturbative QCD: Comparison of Different Treatments for the gg<->ggg Process
- Minimum Shear Viscosity over Entropy Density at Phase Transition? --- A Counterexample
- Hadronic transport coefficients from the linear sigma model at finite temperature
- Bulk viscosity of the massive Gross-Neveu model
- Chiral restoration effects on the shear viscosity of a pion gas
- Hadron resonance gas with repulsive mean field interaction: Thermodynamics and transport properties
- Nuclear and Quark Matter at High Temperature
- Estimating transport coefficients of interacting pion gas with K-matrix cross sections
- Bulk viscosity and energy-momentum correlations in high energy hadron collisions
- Degeneracy patterns of chiral companions at finite temperature
- Viscous coefficients and thermal conductivity of a gas mixture in the medium
- Shear viscosity over entropy density ratio with extended quasi-particles
- Shear Viscosity in Weakly Coupled N-Component Scalar Field Theories
- Shear and bulk viscosities of a photon gas at low temperature
- Order-by-order Anisotropic Transport Coefficients of a Magnetised Fluid: a Chapman-Enskog Approach
- Analytical formulas for shear and bulk viscosities in relativistic gaseous mixtures with constant cross sections
- Entanglement Entropy and Quantum Phase Transition in the -model