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Elliptic Flow and Nuclear Modification Factor in Ultrarelativistic Heavy-Ion Collisions within a Partonic Transport Model

机译:相对论重离子碰撞模型中超相对论重离子碰撞中的椭圆流动和核修饰因子

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The quark gluon plasma produced in ultrarelativistic heavy-ion collisions exhibits remarkable features. It behaves like a nearly perfect liquid with a small shear viscosity to entropy density ratio and leads to the quenching of highly energetic particles. We show that both effects can be understood for the first time within one common framework. Employing the parton cascade Boltzmann approach to multiparton scatterings, the microscopic interactions and the space-time evolution of the quark gluon plasma are calculated by solving the relativistic Boltzmann equation. Based on cross sections obtained from perturbative QCD with explicitly taking the running coupling into account, we calculate the nuclear modification factor and elliptic flow in ultrarelativistic heavy-ion collisions. With only one single parameter associated with coherence effects of medium-induced gluon radiation, the experimental data of both observables can be understood on a microscopic level. Furthermore, we show that perturbative QCD interactions with a running coupling lead to a sufficiently small shear viscosity to entropy density ratio of the quark gluon plasma, which provides a microscopic explanation for the observations stated by hydrodynamic calculations.
机译:在超相对论重离子碰撞中产生的夸克胶子等离子体具有显着特征。它的表现像几乎完美的液体,剪切粘度与熵密度之比小,并导致高能粒子淬灭。我们展示了在一个通用框架内首次可以理解这两种效果。利用帕顿级联玻尔兹曼方法进行多粒子散射,通过求解相对论的玻尔兹曼方程,计算了夸克胶子等离子体的微观相互作用和时空演化。基于从扰动QCD获得的横截面,并明确考虑了运行耦合,我们计算了超相对论重离子碰撞中的核修饰因子和椭圆流。仅使用一个与介质诱导的胶子辐射的相干效应相关的参数,就可以在微观水平上理解两个观测值的实验数据。此外,我们表明与连续耦合的扰动QCD相互作用导致夸克胶子等离子体的剪切粘度与熵密度之比足够小,这为流体力学计算得出的观测结果提供了微观解释。

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