Anti-flow of Mesons in the High Baryon Density Region
arXiv:2408.07563 · doi:10.1103/PhysRevC.110.034903
Abstract
The E895 and STAR experiments demonstrate that the slopes of directed flow with respect to rapidity () of mesons are negative in the low transverse momentum () region, GeV/, in Au + Au collisions at GeV. Using the transport model JAM, we investigate the directed flow of , , and as functions of rapidity, , and collision energy in Au + Au collisions at the same energies as those in the E895 and STAR experiments. We find that the JAM model can qualitatively reproduce the anti-flow of observed in the E895 experiment. The slopes of pions and kaons are analyzed as functions of the window, revealing a strong dependence of the slopes. Negative slopes are observed in the low region, GeV/, while positive slopes are shown in the higher region. We find that the shadowing effect from spectators is crucial in generating the anti-flow of mesons at low in the high baryon density region.
7 pages, 7 figures, accepted by Phys. Rev. C
References in corpus (6)
- Elliptic and triangular flow in event-by-event (3+1)D viscous hydrodynamics
- Directed flow in ultrarelativistic heavy-ion collisions
- Directed Flow Indicates a Crossover Deconfinement Transition in Relativistic Nuclear Collisions
- The high-density equation of state in heavy-ion collisions: Constraints from proton flow
- Directed flow of in high-energy heavy-ion collisions and potential in dense nuclear matter
- Probing the incompressibility of dense hadronic matter near QCD phase transition in relativistic heavy-ion collisions