Qiu Jian-Wei, Ringer Felix, Sato Nobuo, Zurita Pia
Theory Center, Jefferson Laboratory, Newport News, Virginia 23606, USA.
Nuclear Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2019 Jun 28;122(25):252301. doi: 10.1103/PhysRevLett.122.252301.
We propose a new phenomenological approach to establish QCD factorization of jet cross sections in the heavy-ion environment. Starting from a factorization formalism in proton-proton collisions, we introduce medium modified jet functions to capture the leading interaction of jets with the hot and dense QCD medium. A global analysis using a Monte Carlo sampling approach is performed in order to reliably determine the new jet functions from the nuclear modification factor of inclusive jets at the LHC. We find that gluon jets are significantly more suppressed due to the presence of the medium than quark jets. In addition, we observe that the jet radius dependence is directly related to the relative suppression of quark and gluon jets. Our approach may help to improve the extraction of medium properties from data.
我们提出了一种新的唯象学方法,以在重离子环境中建立喷注截面的 QCD 因子化。从质子 - 质子碰撞中的因子化形式出发,我们引入介质修正的喷注函数,以捕捉喷注与热密 QCD 介质的主导相互作用。为了从 LHC 上的包容性喷注的核修正因子可靠地确定新的喷注函数,我们使用蒙特卡罗抽样方法进行了全局分析。我们发现,由于介质的存在,胶子喷注比夸克喷注受到的抑制要显著得多。此外,我们观察到喷注半径依赖性与夸克和胶子喷注的相对抑制直接相关。我们的方法可能有助于改进从数据中提取介质性质的过程。