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Hadron resonance gas model with induced surface tension.

Authors :
Sagun, V. V.
Bugaev, K. A.
Ivanytskyi, A. I.
Yakimenko, I. P.
Nikonov, E. G.
Taranenko, A. V.
Greiner, C.
Blaschke, D. B.
Zinovjev, G. M.
Source :
European Physical Journal A -- Hadrons & Nuclei; Jun2018, Vol. 54 Issue 6, p1-1, 1p
Publication Year :
2018

Abstract

Here we present a generalization of the multicomponent Van der Waals equation of state in the grand canonical ensemble. For the one-component case the third and fourth virial coefficients are calculated analytically. It is shown that the adjustment of a single model parameter allows us to reproduce the third and fourth virial coefficients of the gas of hard spheres with small deviations from their exact values. A thorough comparison of the compressibility factor and speed of sound of this model with the one- and two-component Carnahan-Starling equation of state is made. We show that the model with the induced surface tension can reproduce the results of the Carnahan-Starling equation of state up to the packing fractions 0.2-0.22 at which the Van der Waals equation of state is inapplicable. Using this approach we develop an entirely new hadron resonance gas model and apply it to a description of the hadron yield ratios measured at AGS, SPS, RHIC and ALICE energies of nuclear collisions. We confirm that the strangeness enhancement factor has a peak at low AGS energies and that there is a jump of chemical freeze-out temperature between the two highest AGS energies. Also we argue that the chemical equilibrium of strangeness, i.e.γs≃1<inline-graphic></inline-graphic>, observed above the center of mass collision energy 8.7 GeV, may be related to a hadronization of quark gluon bags which have a Hagedorn mass spectrum, and, hence, it may be a new signal for the onset of deconfinement. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14346001
Volume :
54
Issue :
6
Database :
Complementary Index
Journal :
European Physical Journal A -- Hadrons & Nuclei
Publication Type :
Academic Journal
Accession number :
130862221
Full Text :
https://doi.org/10.1140/epja/i2018-12535-1