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Directed Flow in Microscopic Models in Relativistic A+A Collisions ?

机译:相对论A + A碰撞中微观模型的定向流?

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Evolution of directed flow of charged particles produced in relativistic heavy-ion collisions at energies 4 ≤ s ≤ 19.6 GeV is considered within two microscopic transport models, ultra-relativistic quantum molecular dynamics (UrQMD) and quark-gluon string model (QGSM). In both models, the directed flow of protons changes its sign at midrapidity from antiflow to normal flow with decreasing energy of collisions, whereas the flows of mesons and antiprotons remain antiflow-oriented. For lighter colliding systems, such as Cu+Cu or S+S, changing of the proton directed flow occurs at lower bombarding energies and for more central topologies compared to a heavy Au+Au system. The differences can be explained by dissimilar production zones of different hadrons and by the influence of spectators. Directed flows of most abundant hadronic species at midrapidity are found to be formed within t = 10–12 fm/c after the beginning of nuclear collision. The influence of hard and soft mean-field potentials on the directed flow is also studied.
机译:在两个微观传输模型(超相对论量子分子动力学(UrQMD)和夸克胶子弦模型(QGSM))中考虑了相对论重离子碰撞在能量4≤s≤19.6 GeV时产生的带电粒子的定向流演变。在这两个模型中,质子的定向流在中间快速变化时从反流变为正流,并且碰撞能量降低,而介子和反质子的流仍以反流为导向。对于较轻的碰撞系统(例如Cu + Cu或S + S),与较重的Au + Au系统相比,质子导向流的变化发生在轰击能量较低的情况下,并且对于更集中的拓扑结构。差异可以通过不同强子的不同产区和观众的影响来解释。在核碰撞开始后,在t = 10–12 fm / c范围内形成了处于快发状态的最丰富的强电子物种的定向流。还研究了硬和软平均场电势对定向流的影响。

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