arXiv:2407.05722·v1·High Energy Physics — Phenomenology
Collision energy dependence of elliptic flow of identified hadrons in heavy-ion collisions using the PHSD model
B. Towseef · M. Farooq · V. Bairathi · B. Waseem · S. Kabana · S. Ahmad
Abstract
We report the first predictions of elliptic flow () of identified hadrons at mid-rapidity ( 1.0) in Au+Au collisions at 6.7, 8, 11, and 25 A GeV using the Parton Hadron String Dynamics (PHSD) model. The transverse momentum () dependence of identified hadron in different centrality intervals (0-10%, 10-40%, and 40-80%) are shown. A clear centrality dependence of is observed for particles at 25 and 11 A GeV, while the centrality dependence becomes weaker for particles at 8 and 6.7 A GeV. Within the PHSD model, the number of constituent quark (NCQ) scaling of approximately follows in Au+Au collisions at all beam energies. A collision energy () dependence of , , and is studied in comparison with available published experimental data in the beam energy range of 6-25 A GeV. These predictions will help in interpreting the data from the forthcoming Compressed Baryonic Matter (CBM) experiment at the Facility for Antiproton and Ion Research (FAIR) and Multi-Purpose Detector (MPD) at the Nuclotron-based Ion Collider facility (NICA).
Comments: 8 pages, 7 figures