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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Revisiting directed flow in relativistic heavy-ion collisions from a multiphase transport model
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Revisiting directed flow in relativistic heavy-ion collisions from a multiphase transport model

机译:从多相传输模型重新试论相对论的重离子碰撞中的定向流

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摘要

We have revisited several interesting questions on how the rapidity-odd directed flow is developed in relativistic Au-197+Au-197 collisions at and 39 GeV based on a multiphase transport model. As the partonic phase evolves with time, the slope of the parton directed flow at midrapidity region changes from negative to positive as a result of the later dynamics at 200 GeV, while it remains negative at 39 GeV due to the shorter life time of the partonic phase. The directed flow splitting for various quark species due to their different initial eccentricities is observed at 39 GeV, while the splitting is very small at 200GeV. From a dynamical coalescence algorithm with Wigner functions, we found that the directed flow of hadrons is a result of competition between the coalescence in momentum and coordinate space as well as further modifications by the hadronic rescatterings.
机译:基于多相输运模型,我们重新讨论了几个有趣的问题,即在和39GeV的相对论性Au-197+Au-197碰撞中,奇速定向流是如何发展的。当部分子相随时间演化时,由于200 GeV下的后期动力学,中快度区部分子定向流动的斜率从负变为正,而由于部分子相的寿命较短,在39 GeV下仍然为负。在39GeV下观察到不同夸克物种由于其不同的初始偏心率而产生的定向流分裂,而在200GeV时分裂非常小。从一个带有Wigner函数的动态聚结算法中,我们发现强子的定向流动是动量空间和坐标空间中聚结之间竞争的结果,以及强子重散射的进一步修正。

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