arXiv:nucl-th/0302029·v2·Nuclear Theory
Evolution of Baryon-Free Matter Produced in Relativistic Heavy-Ion Collisions
V.N. Russkikh🇩🇪 · Yu.B. Ivanov (GSI, Darmstadt; Kurchatov Institute, Moscow)🇩🇪 · E.G. Nikonov (GSI, Darmstadt; JINR, Dubna)🇩🇪 · W. Noerenberg (GSI, Darmstadt)🇩🇪 · V.D. Toneev (GSI, Darmstadt; JINR, Dubna)🇩🇪
Abstract
A 3-fluid hydrodynamic model is introduced for simulating heavy-ion collisions at incident energies between few and about 200 AGeV. In addition to the two baryon-rich fluids of 2-fluid models, the new model incorporates a third, baryon-free (i.e. with zero net baryonic charge) fluid which is created in the mid-rapidity region. Its evolution is delayed due to a formation time , during which the baryon-free fluid neither thermalizes nor interacts with the baryon-rich fluids. After formation it thermalizes and starts to interact with the baryon-rich fluids. It is found that for =0 the interaction strongly affects the baryon-free fluid. However, at reasonable finite formation time, =1 fm/c, the effect of this interaction turns out to be substantially reduced although still noticeable. Baryonic observables are only slightly affected by the interaction with the baryon-free fluid.
Comments: 17 pages, 3 figures, submitted to the issue of Phys. of Atomic Nuclei dedicated to S.T. Belyaev on the occasion of his 80th birthday, typos corrected