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Phenomenological bound on the viscosity of the hadron resonance gas

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arxiv 1807.03188 v2 pith:G55IONNX submitted 2018-07-09 hep-ph nucl-th

classification hep-phnucl-th
keywords boundcoefficientslowerphenomenologicalproposedresonancetransportdissipation
verification ladder T0 review T1 audit T2 compute T3 formal
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We have explored some phenomenological issues during calculations of transport coefficients for hadronic matter, produced in the experiments of heavy ion collisions. Here, we have used an ideal hadron resonance gas model to demonstrate the issues. On the basis of dissipation mechanism, the hadronic zoo is classified into resonance and non-resonance members, who participate in dissipation via strong decay and scattering channels respectively. Imposing our phenomenological restriction, we are able to provide a rough upper and lower bound estimations of transport coefficients. Interestingly, we find that our proposed lower limit estimation for shear viscosity to entropy density ratio is little larger than its quantum lower bound. By taking a simple example, we have demonstrated how our proposed restriction help to tune any estimation of transport coefficients within its numerical band, proposed by us.

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