计算QCD相图中核碰撞轨迹的半解析方法

Zi-Wei Lin, T. Mendenhall
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摘要

有限核厚度影响重离子碰撞产生的能量密度(t)和守恒电荷密度(如净重子密度nB(t))。当初始态的比约肯能量密度公式成立时,在高碰撞能量下影响很小,而在低碰撞能量下影响很大,在低碰撞能量下,核穿越时间与部分子形成时间相比并不小。稠密物质的温度T(T)和化学势µ(T)可以从给定状态方程(EOS)的密度中提取出来。因此,在中低能量(如RHIC-BES能量)相对论性核碰撞的QCD相图中,包括核厚度对于确定T-µB轨迹至关重要。在本程序中,我们将首先讨论我们的半解析方法,其中包括核厚度效应及其对密度的影响,包括_ (t), nB(t), nQ(t)和nS(t)。然后,我们将展示使用具有量子或玻尔兹曼统计的理想气体EOS提取的夸克-胶子等离子体的T(T),µB(T),µQ(T)和µS(T)。最后,我们将展示与QCD临界终点可能位置相关的T-µB轨迹的结果。这种半解析模型为研究QCD相图中的核碰撞轨迹提供了方便的工具。
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A Semi-analytical Method of Calculating Nuclear Collision Trajectory in the QCD Phase Diagram
The finite nuclear thickness affects the energy density (t) and conserved-charge densities such as the net-baryon density nB(t) produced in heavy ion collisions. While the effect is small at high collision energies where the Bjorken energy density formula for the initial state is valid, the effect is large at low collision energies, where the nuclear crossing time is not small compared to the parton formation time. The temperature T(t) and chemical potentials µ(t) of the dense matter can be extracted from the densities for a given equation of state (EOS). Therefore, including the nuclear thickness is essential for the determination of the T-µB trajectory in the QCD phase diagram for relativistic nuclear collisions at low to moderate energies such as the RHIC-BES energies. In this proceeding, we will first discuss our semi-analytical method that includes the nuclear thickness effect and its results on the densities є(t), nB(t), nQ(t), and nS(t). Then, we will show the extracted T(t), µB(t), µQ(t), and µS(t) for a quark-gluon plasma using the ideal gas EOS with quantum or Boltzmann statistics. Finally, we will show the results on the T-µB trajectories in relation to the possible location of the QCD critical end point. This semi-analytical model provides a convenient tool for exploring the trajectories of nuclear collisions in the QCD phase diagram.
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