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QCD evolution of jets in the quark-gluon plasma

机译:夸克-胶子等离子体中射流的QCD演化

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摘要

The quark-gluon plasma (QGP) can be explored in relativistic heavy ion collisions by the jet quenching signature, i.e., by the energy loss of a high energy quark or gluon traversing the plasma. We introduce a novel QCD evolution formalism in the leading logarithm approximation, where normal parton radiation is interleaved with scattering on the plasma gluons occuring at a similar time scale. The idea is elaborated in two approaches. One extends the DGLAP evolution equations for fragmentation functions to include scatterings in the medium, which facilitates numerical solutions for comparison with data and provides a basis for a Monte Carlo implementation. The other approach is more general by including also the transverse momentum dependence of the jet evolution, which allows a separation of the scales also for the scattering term and provides a basis for analytical investigations. The two approaches are shown to be related and give the same characteristic softening of the jet depending on the temperature of the plasma. A substantial effect is found at the RHIC energy and is further enhanced at LHC. Systematic studies of data on the energy loss could, therefore, demonstrate the existence of the QGP and probe its properties. (C) 2008 Elsevier B.V. All rights reserved.
机译:夸克-胶子等离子体(QGP)可以通过喷射猝灭信号,即通过横穿等离子体的高能夸克或胶子的能量损失,在相对论重离子碰撞中进行探索。我们在前导对数逼近中引入了一种新颖的QCD演化形式论,其中正常部分辐射与在类似时间尺度上发生的等离子体胶子上的散射交错。这个想法用两种方法阐述。一种扩展了用于碎片函数的DGLAP演化方程,以包括介质中的散射,这有利于与数据比较的数值解,并为实现蒙特卡洛法提供了基础。另一种方法是更通用的,它还包括射流演变的横向动量依赖性,这也使得对于散射项也可以分离刻度,并为分析研究提供基础。两种方法被证明是相关的,并根据等离子体的温度给出相同的射流特征软化。在RHIC能量处发现了实质性影响,在LHC处进一步增强了作用。因此,对能量损失数据的系统研究可以证明QGP的存在并探究其特性。 (C)2008 Elsevier B.V.保留所有权利。

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