论文标题

在扰动方法中,全球两极分化在相对论重型离子碰撞中的演变

Evolution of global polarization in relativistic heavy-ion collisions within a perturbative approach

论文作者

Li, Xiaowen, Jiang, Ze-Fang, Cao, Shanshan, Deng, Jian

论文摘要

可以在非中央重型离子碰撞中产生极大的角轨道动量,从而导致由于旋转轨道耦合而导致的部分横向极化,这些part子的强烈横向极化散布在Quark-Gluon等离子体(QGP)上。我们开发了一种扰动方法来描述QGP内夸克极化的形成和时空演化。最初的硬散射和与QGP的相互作用的极化一直在使用夸克电势散射方法始终如一地描述,该方法已与现实的初始条件计算耦合,并且首次对QGP的二维粘性粘性水动力学模拟。在这种改进的方法中,我们发现不同的时空依赖性初始能量密度分布产生了QGP的纵向流速梯度的不同时间演化曲线,这进一步导致QGP上液压高压液的夸克最终差异约为15%。因此,除了集体流量系数外,超子极化还可以作为一种新的工具来帮助限制高能核碰撞中产生的热核物质的初始条件。

Extremely large angular orbital momentum can be produced in non-central heavy-ion collisions, leading to a strong transverse polarization of partons that scatter through the quark-gluon plasma (QGP) due to spin-orbital coupling. We develop a perturbative approach to describe the formation and spacetime evolution of quark polarization inside the QGP. Polarization from both the initial hard scatterings and interactions with the QGP have been consistently described using the quark-potential scattering approach, which has been coupled to realistic initial condition calculation and the subsequent (3+1)-dimensional viscous hydrodynamic simulation of the QGP for the first time. Within this improved approach, we have found that different spacetime-rapidity-dependent initial energy density distributions generate different time evolution profiles of the longitudinal flow velocity gradient of the QGP, which further lead to an approximately 15% difference in the final polarization of quarks collected on the hadronization hypersurface of the QGP. Therefore, in addition to the collective flow coefficients, the hyperon polarization may serve as a novel tool to help constrain the initial condition of the hot nuclear matter created in high-energy nuclear collisions.

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