首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Transport properties and Langevin dynamics of heavy quarks and quarkonia in the Quark Gluon Plasma
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Transport properties and Langevin dynamics of heavy quarks and quarkonia in the Quark Gluon Plasma

机译:夸克胶子等离子体中重夸克和夸克尼亚的输运性质和兰格文动力学

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摘要

Quark Gluon Plasma transport coefficients for heavy quarks and Q (Q) over bar pairs are computed through an extension of the results obtained for a hot QED plasma by describing the heavy-quark propagation in the eikonal approximation and by weighting the gauge-field configurations with the Hard Thermal Loop effective action. It is shown that such a model allows to correctly reproduce, at leading logarithmic accuracy, the results obtained by other independent approaches. The results are then inserted into a relativistic Langevin equation allowing to follow the evolution of the heavy-quark momentum spectra. Our numerical findings are also compared with the ones obtained in a strongly-coupled scenario, namely with the transport coefficients predicted (though with some limitations and ambiguities) by the AdS/CFT correspondence.
机译:夸克胶子的夸克胶子等离子体输运系数和棒对上的Q(Q)是通过扩展热QED等离子体获得的结果的方法来计算的,方法是描述重夸克在标准近似中的传播并通过加权标称场配置硬热循环有效动作。结果表明,这样的模型可以以领先的对数精度正确地再现通过其他独立方法获得的结果。然后将结果插入相对论的Langevin方程中,从而可以追踪重夸克动量谱的演变。我们的数值发现也与在强耦合情况下获得的结果进行了比较,即通过AdS / CFT对应关系预测了传输系数(尽管有一些限制和歧义)。

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