English

Dissipative Properties and Isothermal Compressibility of Hot and Dense Hadron Gas using Non-extensive Statistics

High Energy Physics - Phenomenology 2018-11-21 v2 Nuclear Theory

Abstract

We evaluate the transport properties such as shear viscosity (η\eta), bulk viscosity (ζ\zeta) and their ratios over entropy density (ss) for hadronic matter using relativistic non-extensive Boltzmann transport equation (NBTE) in relaxation time approximation (RTA). In NBTE, we argue that the system far from equilibrium may not reach to an equilibrium described by extensive (Boltzmann-Gibbs (BG)) statistics but to a qq-equilibrium defined by Tsallis non-extensive statistics after subsequent evolution, where qq denotes the degree of non-extensivity. We observe that η/s\eta/s and ζ/s\zeta/s decrease rapidly with temperature (TT) for various qq-values. As qq increases, the magnitudes of η/s\eta/s and ζ/s\zeta/s decrease with TT. We also show the upper mass cutoff dependence of these ratios for a particular qq and find that they decrease with the increase in mass cutoff of hadrons. Further, we present the first estimation of isothermal compressibility (κT\kappa_T) using non-extensive Tsallis statistics at finite baryon chemical potential (μB\mu_B). It is observed that, κT\kappa_T changes significantly with the degree of non-extensivity. We also study the squared speed of sound (cs2c_{s}^{2}) as a function of temperature at finite baryon chemical potential for various qq and upper mass cutoffs. It is noticed that there is a strong impact of qq and mass cutoff on the behaviour of cs2c_{s}^{2}.

Keywords

Cite

@article{arxiv.1709.06352,
  title  = {Dissipative Properties and Isothermal Compressibility of Hot and Dense Hadron Gas using Non-extensive Statistics},
  author = {Swatantra Kumar Tiwari and Sushanta Tripathy and Raghunath Sahoo and Nilotpal Kakati},
  journal= {arXiv preprint arXiv:1709.06352},
  year   = {2018}
}

Comments

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