A (re)interpretation of the QCD phase transition and of strangeness as QGP signature

Loading...
Thumbnail Image

Date

Journal Title

Journal ISSN

Volume Title

Publisher

Abstract

Description

The temperature at the chemical freeze-out and at zero baryochemical potential has been extracted in a global analysis of $e^+e^-$, $p+p$, $p+ \overline{p}$ and $A+A$ collisions at $\sqrt{s}$=2-1800 GeV per N+N pair. We demonstrate that the temperature at $μ_B$=0, rises with the initial energy density $ε_i$, and saturates above $ε_i$ $\sim$ 1 GeV/fm$^3$. This behaviour is interpreted as mapping out the QCD phase transition universally in particle and nuclear collisions. The critical energy density is therefore identified to be $ε_{crit}$ $\sim$ 1 $\pm$ 0.3 GeV/fm$^3$. We show that strange particles at $μ_B$=0, are not significantly enhanced in A+A collisions as compared to $p+ \overline{p}$. The so called 'strangeness suppression factor' ($λ_s = \frac{(2 \overline{s})} {(\overline{u} + \overline{d})}$) as a function of $ε_i$ is following the temperature, rising and saturating universally above $ε_{crit}$. This leads to a reinterpretation of strangeness enhancement as QGP signature. Within this interpretation the experimental puzzles with respect to strangeness production can be naturally explained: e.g. the recent measured maximum of $K^+/π^+$ in Pb+Pb collisions at 40 A GeV, is explained as due to $μ_B$. We discuss under which conditions 'strangeness enhancement' and '$J/Ψ$ suppresion' both set in at $ε_{crit}$ $\sim$ 1 GeV/fm$^3$.
8 pages, 5 figures, XXXVIth Rencontres de Moriond on 'QCD and high energy hadronic interactions', 17-24 March 2001, Les Arcs 1800, France

Citation

Consulte el texto completo en el siguiente enlace:

Collections