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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Effects of nuclear potential on the cumulants of net-proton and net-baryon multiplicity distributions in Au plus Au collisions atv root(NN)-N-S=5 GeV
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Effects of nuclear potential on the cumulants of net-proton and net-baryon multiplicity distributions in Au plus Au collisions atv root(NN)-N-S=5 GeV

机译:核势对金加金碰撞原子根(NN)-N-S = 5 GeV时净质子和重质子重子累积量的影响

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摘要

We analyze the rapidity and transverse momentum dependence for the cumulants of the net-proton and net-baryon distributions in Au+Au collisions at root SNN = 5 GeV with a microscopic hadronic transport (JAM) model. To study the effects of mean field potential and softening of equation of state (EoS) on the fluctuations of net-proton (baryon) in heavy-ion collisions, the calculations are performed with two different modes. The softening of EoS is realized in the model by implementing the attractive orbit in the two-body scattering to introduce a reduction pressure of the system. By comparing the results from the two modes with the results from default cascade, we find the mean field potential and softening of EoS have strong impacts on the rapidity distributions (dN/dy) and the shape of the net-proton (baryon) multiplicity distributions. The net-proton (baryon) cumulants and their ratios calculated from all of the three modes are with similar trends and show significant suppression with respect to unity, which can be explained by the presence of baryon number conservations. It indicates that the effects of mean field potential and softening of EoS might be not the ingredients that are responsible to the observed strong enhancement in the most central Au+Au collisions at 7.7 GeV measured by the STAR experiment at RHIC. (C) 2016 The Authors. Published by Elsevier B.V.
机译:我们使用微观强子输送(JAM)模型分析了根SNN = 5 GeV时Au + Au碰撞中净质子和净重子分布的累积量的速度和横向动量依赖性。为了研究重离子碰撞中平均场势和状态方程(EoS)的软化对净质子(重子)波动的影响,计算采用两种不同的模式进行。通过在两体散射中实现吸引轨道并引入系统的减压,可在模型中实现EoS的软化。通过将两种模式的结果与默认级联的结果进行比较,我们发现平均场势和EoS的软化对速度分布(dN / dy)和净质子(重子)多重分布的形状有很大影响。从所有三种模式计算的净质子(重子)累积量和它们的比率具有相似的趋势,并显示出显着的统一性抑制,这可以用重子数守恒来解释。这表明,通过RHIC的STAR实验测得,在7.7 GeV的最中央Au + Au碰撞中,观察到的强增强增强的因素可能不是平均场电势和EoS软化的成分。 (C)2016作者。由Elsevier B.V.发布

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