Directed flow of baryons from high-energy heavy-ion collisions |
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Authors: | Yu. B. Ivanov E. G. Nikonov W. Nörenberg A. A. Shanenko V. D. Toneev |
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Affiliation: | 1. Gesellschaft für Schwerionenforschung mbH, Planckstr. 1, 64291, Darmstadt, Germany 2. Kurchatov Institute, Kurchatov sq. 1, 123182, Moscow, Russia 3. Joint Institute for Nuclear Research, 141980, Dubna, Moscow Region, Russia
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Abstract: | The collective motion of nucleons from high-energy heavy-ion collisions is analyzed within a relativistic two-fluid model for different equations of state (EoS). As function of beam energy the theoretical slope parameter F y of the differential directed flow is in good agreement with experimental data, when calculated for the QCD-consistent EoS described by the statistical mixed-phase model. Within this model, which takes the deconfinement phase transition into account, the excitation function of the directed flow (P x ) turns out to be a smooth function in the whole range from SIS till SPS energies. This function is close to that for pure hadronic EoS and exhibits no minimum predicted earlier for a two-phase bag-model EoS. Attention is also called to a possible formation of nucleon antiflow (F y < 0) at energies ? 100 A·GeV. |
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