Freeze-out conditions in heavy ion collisions from QCD thermodynamics

We present a determination of freeze-out conditions in heavy ion collisions based on ratios of cumulants of net electric charge fluctuations. These ratios can reliably be calculated in lattice QCD for a wide range of chemical potential values by using a next-to-leading order Taylor series expansion...

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Veröffentlicht in:Physical review letters 2012-11, Vol.109 (19), p.192302-192302, Article 192302
Hauptverfasser: Bazavov, A, Ding, H-T, Hegde, P, Kaczmarek, O, Karsch, F, Laermann, E, Mukherjee, Swagato, Petreczky, P, Schmidt, C, Smith, D, Soeldner, W, Wagner, M
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Sprache:eng
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Zusammenfassung:We present a determination of freeze-out conditions in heavy ion collisions based on ratios of cumulants of net electric charge fluctuations. These ratios can reliably be calculated in lattice QCD for a wide range of chemical potential values by using a next-to-leading order Taylor series expansion around the limit of vanishing baryon, electric charge and strangeness chemical potentials. From a computation of up to fourth order cumulants and charge correlations we first determine the strangeness and electric charge chemical potentials that characterize freeze-out conditions in a heavy ion collision and confirm that in the temperature range 150 MeV ≤ T ≤ 170 MeV the hadron resonance gas model provides good approximations for these parameters that agree with QCD calculations on the 5%-15% level. We then show that a comparison of lattice QCD results for ratios of up to third order cumulants of electric charge fluctuations with experimental results allows us to extract the freeze-out baryon chemical potential and the freeze-out temperature.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.109.192302