Transport and Connection to Heavy-ion Collisions via Heavy Flavor Probes

Hai-Tao Shu
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Abstract

The heavy ion experiments in Relativistic Heavy Ion Collider (RHIC) and Large Hadron Collider (LHC) are going through upgrade in the next five years, shifting their focus more on the hard processes in the new runs. One of the main goals is to draw a finer image for the quark gluon plasma (QGP). The heavy flavor probes , which witness the whole history of heavy ion collision are particularly sensitive to test the properties of QGP formed in such collisions. The lattice results for heavy flavor probes provide transport and phenomenological models crucial inputs to describe the experimental observations like the strong suppression of the nuclear modification factor $R_{AA}$ and the non-zero azimuthal anisotropy at low $p_T$. In the last two years we have seen significant advances in the lattice QCD studies of heavy flavor probes, including the in-medium quarkonium properties, the complex static quark-antiquark potential and the heavy quark diffusion from lattice simulations at nonzero temperature. These achievements substantially deepen our understanding of the fate of quarkonium, the screening/unscreening of the complex potential and the temperature and quark mass dependence of the heavy quark diffusion in thermal medium. In these proceedings, we review recent results and briefly discuss possible directions in these studies.
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通过重味探针与重离子碰撞的传输和连接
相对论重离子对撞机(RHIC)和大型强子对撞机(LHC)中的重离子实验将在未来五年内升级,在新的运行中,它们将把重点更多地转向硬过程。主要目标之一是为夸克胶子等离子体(QGP)绘制更精细的图像。重味道探测器见证了重离子对撞的整个历史,对检验在这种对撞中形成的 QGP 的性质特别敏感。重味道探测器的晶格结果提供了传输和现象学模型的关键输入,以描述实验观测结果,如核修正因子$R_{AA}$的强抑制和低$p_T$时的非零方位各向异性。在过去两年里,我们在重味道探针的晶格QCD研究方面取得了重大进展,包括在非零温度下从晶格模拟中得到的中间夸克特性、复杂的静态夸克-反夸克势和重夸克扩散。这些成果大大加深了我们对夸克鎓的命运、复势的筛选/解筛选以及热介质中重夸克扩散的温度和夸克质量依赖性的理解。在本论文集中,我们回顾了最新成果,并简要讨论了这些研究的可能方向。
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