arXiv:0910.1400·v3·Nuclear Theory
Energy Dependence of Directed Flow in Au+Au Collisions from a Multi-phase Transport Model
J.Y. Chen🇨🇳 · J.X. Zuo🇨🇳 · X.Z. Cai🇨🇳 · F. Liu🇨🇳 · Y.G. Ma🇨🇳 · A.H. Tang🇺🇸
Abstract
The directed flow of charged hadron and identified particles has been studied in the framework of a multi-phase transport (AMPT) model, for Au+Au collisions at 200, 130, 62.4, 39, 17.2 and 9.2 GeV. The rapidity, centrality and energy dependence of directed flow for charged particles over a wide rapidity range are presented. AMPT model gives the correct slope, as well as its trend as a function of energy, while it underestimates the magnitude. Within the AMPT model, the proton slope is found to change its sign when the energy increases to 130 GeV - a feature that is consistent with ``anti-flow''. Hadronic re-scattering is found having little effect on at top RHIC energies. These studies can help us to understand the collective dynamics at early times in relativistic heavy-ion collisions, and they can also be served as references for the RHIC Beam Energy Scan program.
Comments: 5 pages,4 figures