arXiv:nucl-th/0309008·v2·Nuclear Theory
Three-Fluid Simulations of Relativistic Heavy-Ion Collisions
V.D.Toneev (1,2)🇷🇺 · Yu.B.Ivanov (2,3)🇩🇪 · E.G.Nikonov (1,2)🇷🇺 · W.Noerenberg (2)🇩🇪 · V.N.Russkikh (2,3) ((1) Joint Institute for Nuclear Research; (2)Gesellschaft fuer Schwerionenforschung mbH;(3) Kurchatov Institute)🇩🇪
Abstract
A relativistic 3-fluid 3D hydrodynamic model has been developed for describing heavy-ion collisions at incident energies between few and 200 AGeV. In addition to two baryon-rich fluids which simulate mutually decelerating counterflows of target and projectile nucleons, the new model incorporates evolution of a third, retarded baryon-free fluid created by this decelerated baryonic matter. Different equations of state, including those with the deconfinement phase transition, are treated. A reasonable agreement with experiment is illustrated by proton rapidity spectra, their dependence on collision centrality and beam energy.
Comments: 11 pages, 3 figures, to be published in the Proceedings of the XII International Conference on selected Problems of Modern Physics dedicated to 95th annuversary of D.I. Blokhintsev's birth, Dubna, June 8-11, 2003