论文标题
喷射引起的扩散唤醒的3D结构在扩展
3D structure of jet-induced diffusion wake in an expanding quark-gluon plasma
论文作者
论文摘要
伴随喷气引起的马赫锥的扩散唤醒提供了对高能重型离子碰撞中夸克 - 胶子等离子体特性的独特探针。它的特征是在传播射流的相反方向上耗尽了软黑子子。我们探讨了$γ$触发的3D结构,该结构是由$γ$触发的喷气机引起的PB+PB碰撞,在耦合的线性玻尔兹曼传输和水电模型中的LHC能量。我们确定山谷结构是由山脊上的扩散唤醒引起的,从初始多个Parton相互作用(MPI)中的射流 - 二重相关性作为速度和方位角的函数。这导致了在喷气机的相反方向的速度分布中的双峰结构,这是扩散唤醒的明确信号。使用两个高斯拟合,我们将扩散唤醒和MPI贡献提取到双峰。发现以$γ$ -JET不对称为特征的射流能量损失发现扩散的唤醒谷。还研究了其对状态和剪切粘度方程的敏感性。
The diffusion wake accompanying the jet-induced Mach cone provides a unique probe of the properties of quark-gluon plasma in high-energy heavy-ion collisions. It can be characterized by a depletion of soft hadrons in the opposite direction of the propagating jet. We explore the 3D structure of the diffusion wake induced by $γ$-triggered jets in Pb+Pb collisions at the LHC energy within the coupled linear Boltzmann transport and hydro model. We identify a valley structure caused by the diffusion wake on top of a ridge from the initial multiple parton interaction (MPI) in jet-hadron correlation as a function of rapidity and azimuthal angle. This leads to a double-peak structure in the rapidity distribution of soft hadrons in the opposite direction of the jets as an unambiguous signal of the diffusion wake. Using a two-Gaussian fit, we extract the diffusion wake and MPI contributions to the double peak. The diffusion wake valley is found to deepen with the jet energy loss as characterized by the $γ$-jet asymmetry. Its sensitivity to the equation of state and shear viscosity is also studied.