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Estimating the charm quark diffusion coefficient and thermalization time from D meson spectra at energies available at the BNL Relativistic Heavy Ion Collider and the CERN Large Hadron Collider

机译:在BNL相对论重离子撞机和CERN大型HADRON撞机中,估计来自D Meson Spectra的魅力夸克扩散系数和热化时间。

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We describe the propagation of charm quarks in the quark-gluon plasma (QGP) by means of a Boltzmann transport approach. Nonperturbative interaction between heavy quarks and light quarks have been taken into account through a quasiparticle approach in which light partons are dressed with thermal masses tuned to lattice quantum chromodynamics (lQCD) thermodynamics. Such a model is able to describe the main feature of the nonperturbative dynamics: the enhancement of the interaction strength near T-c. We show that the resulting charm in-medium evolution is able to correctly predict simultaneously the nuclear suppression factor, R-AA, and the elliptic flow, upsilon(2), at both Relativistic Heavy Ion Collider and Large Hadron Collider (LHC) energies and at different centralities. The hadronization of charm quarks is described by mean of an hybrid model of fragmentation plus coalescence and plays a key role toward the agreement with experimental data. We also performed calculations within the Langevin approach, which can lead to very similar R-AA(p(T)) as Boltzmann, but the charm drag coefficient as to be reduced by about a 30% and also generates an elliptic flow upsilon(2)(p(T)) is about a 15% smaller. We finally compare the space diffusion coefficient 2 pi TDs extracted by our phenomenological approach to lattice QCD results, finding a satisfying agreement within the present systematic uncertainties. Our analysis implies a charm thermalization time, in the p -> 0 limit, of about 4-6 fm/c, which is smaller than the QGP lifetime at LHC energy.
机译:我们通过Boltzmann运输方法描述了Quark-Gluon等离子体(QGP)中的Charm夸克的传播。通过Quasiparticle方法考虑了重型夸克和光夸克之间的非触发相互作用,其中灯池敷料穿着热量调节到晶格量子色动力学(LQCD)热力学的热肿块。这种模型能够描述非触发动态的主要特征:改进T-C附近的相互作用强度。我们表明所得到的魅力中 - 中型进化能够同时正确预测核抑制因子,R-AA和椭圆形流量,upsilon(2),在相对论的重离子撞机和大型强子撞机(LHC)能量上在不同的集中性。 Charm夸克的结向化由碎片加合成的混合模型的平均值描述,并对与实验数据的协议发挥关键作用。我们还在Langevin方法内进行了计算,这可以导致非常相似的R-AA(P(T))作为Boltzmann,但魅力阻力系数降低约30%并且还产生椭圆形流量Upsilon(2 )(p(t))较小约15%。我们最终比较我们的现象学方法提取的空间扩散系数2 PI TDS以格子QCD结果,在目前的系统不确定性中找到了一个令人满意的一致性。我们的分析意味着魅力热化时间,在P - > 0限度中,约4-6 fm / c,其小于LHC能量的QGP寿命。

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