arXiv:0903.2911·v3·High Energy Physics — Phenomenology
Net-baryon-, net-proton-, and net-charge kurtosis in heavy-ion collisions within a relativistic transport approach
Marlene Nahrgang (1,2)🇫🇷 · Tim Schuster (2,4)🇩🇪 · Michael Mitrovski (2,3)🇩🇪 · Reinhard Stock (2,4)🇩🇪 · Marcus Bleicher (2,3) ((1) Subatech, Nantes, (2) Frankfurt Institute for Advanced Studies (FIAS), (3) Institut für Theoretische Physik, Johann Wolfgang Goethe-Universität, (4) Institut für Kernphysik, Johann Wolfgang Goethe-Universität)🇩🇪
Abstract
We explore the potential of net-baryon, net-proton and net-charge kurtosis measurements to investigate the properties of hot and dense matter created in relativistic heavy-ion collisions. Contrary to calculations in a grand canonical ensemble we explicitly take into account exact electric and baryon charge conservation on an event-by-event basis. This drastically limits the width of baryon fluctuations. A simple model to account for this is to assume a grand-canonical distribution with a sharp cut-off at the tails. We present baseline predictions of the energy dependence of the net-baryon, net-proton and net-charge kurtosis for central ( fm) Pb+Pb/Au+Au collisions from GeV to GeV from the UrQMD model. While the net-charge kurtosis is compatible with values around zero, the net-baryon number decreases to large negative values with decreasing beam energy. The net-proton kurtosis becomes only slightly negative for low .