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Chemical Freeze-Out Conditions in Hadron Resonance Gas

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Part of the book series: FIAS Interdisciplinary Science Series ((FIAS))

Abstract

The hadron resonance gas model with the hadron-type dependent eigenvolume corrections is employed to fit the hadron yield data of the NA49 collaboration for central Pb + Pb collisions at the center of mass energy of the nucleon pair \(\sqrt{s_{_\mathrm{NN}}} = 6.3, 7.6, 8.8, 12.3,\) and 17.3 GeV, the hadron midrapidity yield data of the STAR collaboration for Au + Au collisions at \(\sqrt{s_\mathrm{NN}} = 200\) GeV, and the hadron midrapidity yield data of the ALICE collaboration for Pb + Pb collisions at \(\sqrt{s_\mathrm{NN}} = 2760\) GeV. The influence of the eigenvolume corrections is studied.

Talk presented by H.S., Judah M. Eisenberg Laureatus Chair.

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Acknowledgments

We dedicate this presentation to Walter Greiner. Scientific discussions with him were really stimulating and guided our studies during last three decades.

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Correspondence to H. Stöcker .

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Vovchenko, V., Gorenstein, M.I., Satarov, L.M., Stöcker, H. (2017). Chemical Freeze-Out Conditions in Hadron Resonance Gas. In: Schramm, S., Schäfer, M. (eds) New Horizons in Fundamental Physics. FIAS Interdisciplinary Science Series. Springer, Cham. https://doi.org/10.1007/978-3-319-44165-8_10

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