English

Hadronic centrality dependence in nuclear collisions

High Energy Physics - Phenomenology 2007-05-23 v1

Abstract

The kaon number density in nucleus+nucleus and p+p reactions is investigated for the first time as a function of the initial energy density ϵ\epsilon and is found to exhibit a discontinuity around ϵ\epsilon=1.3 GeV/fm3^3. This suggests a higher degree of chemical equilibrium for ϵ>\epsilon > 1.3 GeV/fm3^3. It can also be interpreted as reflection of the same discontinuity, appearing in the chemical freeze out temperature (T) as a function of ϵ\epsilon. The Nα1N^{\alpha \sim 1} dependence of (u,d,s) hadrons, with N the number of participating nucleons, also indicates a high degree of chemical equilibrium and T saturation, reached at ϵ>\epsilon >1.3 GeV/fm3^3.Assuming that the intermediate mass region (IMR) dimuon enhancement seen by NA50 is due to open charm (DDˉD \bar{D}), the following observation can be made: a) Charm is not equilibrated. b) J/Ψ/DDˉJ/\Psi/D \bar{D} suppression -unlike J/Ψ/DYJ/\Psi/DY- appears also in S+A collisions, above ϵ\epsilon \sim1 GeV/fm3^3. c) Both charm and strangeness show a discontinuity near the same ϵ\epsilon. d) J/ΨJ/\Psi could be formed mainly through ccˉc \bar{c} coalescence. e) The enhancement factors of hadrons with u,d,s,c quarks may be connected in a simple way to the mass gain of these particles if they are produced out of a quark gluon plasma (QGP). We discuss these results as possible evidence for the QCD phase transition occuring near ϵ\epsilon \sim 1.3 GeV/fm3^3.

Keywords

Cite

@article{arxiv.hep-ph/0010246,
  title  = {Hadronic centrality dependence in nuclear collisions},
  author = {Sonja Kabana},
  journal= {arXiv preprint arXiv:hep-ph/0010246},
  year   = {2007}
}

Comments

4 pages, 4 figures, to appear in the proceedings of the XXXth International Conference on High Energy Physics, 27 July - 2 August 2000, Osaka, Japan

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