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Hydrodynamic afterburner for the color glass condensate and the parton energy loss

机译:彩色玻璃冷凝物的流体动力加力燃烧器和部分能量损失

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摘要

We take hydrodynamic initial conditions in relativistic heavy ion collisions from the Color Glass Condensate (CGC) picture through the k(T) factorization formula. Gluon distributions produced from the CGC are found to provide good initial conditions for the hydrodynamic simulations in An + An collisions at Relativistic Heavy Ion Collider (RHIC) energies. We reproduce the centrality, rapidity, and energy dependences of multiplicity within this approach. We also investigate the energy loss of high p(T) partons in the dense thermalized medium created from colliding two CGCs. We find that our results on the centrality dependence of nuclear modification factors for pions and back-to-back correlation for charged hadrons at midrapidity are consistent with the RHIC data up to semicentral events. Whereas, our approach in which jets are calculated from perturbative QCD 2 --> 2 processes predicts less suppression at forward rapidity region compared to the BRAHMS data in Au + Au collisions at RHIC. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们通过k(T)分解公式,从有色玻璃冷凝物(CGC)图片中得出相对论性重离子碰撞中的流体动力学初始条件。发现从CGC产生的胶子分布为相对论重离子对撞机(RHIC)能量在An + An碰撞中的流体动力学模拟提供了良好的初始条件。我们在这种方法中重现了多重性的中心性,快速性和能量依赖性。我们还研究了碰撞两个CGC产生的致密热化介质中高p(T)部分的能量损失。我们发现,我们关于核修饰因子对中心点的中心依赖性和中速带电强子的背对背相关性的结果与半中心事件之前的RHIC数据一致。相比之下,我们的方法是通过扰动QCD 2-> 2过程来计算射流,与RHIC的Au + Au碰撞中的BRAHMS数据相比,在正向速度区域预测的抑制较小。 (C)2004 Elsevier B.V.保留所有权利。

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