Hydrodynamical analysis of symmetric nucleus-nucleus collisions at CERN/SPS energies
U. Ornik, M. Plümer, B. R. Schlei, D. Strottman, R. M. Weiner
Abstract
We present a coherent theoretical study of ultrarelativistic heavy-ion data obtained at the CERN/SPS by the NA35/NA49 Collaborations using 3+1-dimensional relativistic hydrodynamics. We find excellent agreement with the rapidity spectra of negative hadrons and protons and with the correlation measurements in two experiments: S+S at 200 AGeV and Pb+Pb at 160 AGeV (preliminary results). Within our model this implies that for Pb+Pb (S+S) a quark-gluon-plasma of initial volume 174 fm3 (24 fm3) with a lifetime 3.4 fm/c (1.5 fm/c) was formed. It is found that the Bose-Einstein correlation measurements do not determine the maximal effective radii of the hadron sources because of the large contributions from resonance decay at small momenta. Also within this study we present an NA49 acceptance corrected two-pion Bose-Einstein correlation function in the invariant variable, Qinv.
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