The impact of glasma on heavy flavor azimuthal correlations and spectra

Dana Avramescu, Vincenzo Greco, Tuomas Lappi, Heikki Mäntysaari, David Müller
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Abstract

We study the phenomenological impact of the pre-equilibrium glasma initial stage of heavy-ion collisions on heavy quark azimuthal correlations and spectra. Using our numerical solver, we simulate the transport of heavy quark test particles in an SU(3) glasma background field. The glasma field equations are formulated using classical real-time lattice gauge theory, and the heavy quark dynamics are described by classical transport equations numerically solved using the colored particle-in-cell method. For the first time, the effect of the glasma stage on the azimuthal correlations of $c\overline{c}$ and $b\overline{b}$ pairs is studied. The resulting azimuthal width $\sigma_{\Delta\phi}$ exhibits a large and quick decorrelation due to the strong glasma fields. Further, we evaluate how the $p_T$-broadening in the glasma affects heavy quark $p_T$-spectra, which are initialized according to the FONLL heavy quark production calculation. The nuclear modification factor $R_{AA}$ is extracted for $c$ and $b$ quarks in the glasma and additional nuclear PDF effects accounting for gluon shadowing are included.
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等离子体对重味道方位相关性和光谱的影响
我们研究了重离子碰撞的前平衡等离子体初始阶段对重夸克方位相关和光谱的现象学影响。利用我们的数值求解器,我们模拟了重夸克检验粒子在SU(3)等离子体背景场中的输运。等离子体场方程采用经典实时晶格规理论,重夸克动力学由经典输运方程描述,采用彩色粒子入胞法数值求解。首次研究了等离子体阶段对$c\overline{c}$和$b\overline{b}$对的方位相关性的影响。由于强大的等离子体场,产生的方位角宽度$\sigma_\Delta\phi}$表现出巨大而快速的去相关性。此外,我们还评估了等离子体中的 $p_T$ 宽度对重夸克 $p_T$ 谱的影响,重夸克谱是根据 FONLL 重夸克生成计算进行初始化的。我们提取了等离子体中 $c$ 和 $b$ 夸克的核修正因子 $R_{AA}$,并包含了额外的核 PDF 效应,即胶子阴影效应。
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