夸克-胶子等离子体的探测和等离子体的不稳定性

Sigtryggur Hauksson, S. Jeon, C. Gale
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引用次数: 4

摘要

重离子碰撞中的穿透探针,如射流和光子,对产生的夸克-胶子等离子体的输运系数很敏感,如剪切和体粘度。量化这种灵敏度需要详细了解非平衡等离子体中的光子发射和射流-介质相互作用。到目前为止,这种理解一直受到等离子体不稳定性的阻碍,等离子体不稳定性在评估硬探针与等离子体的相互作用速率时,会导致虚假的分歧。在本文中,我们证明了考虑不稳定等离子体的时间演化可以解决这些分歧。我们计算了初始动量各向异性较小的情况下胶子两点相关器的时间演化,结果表明胶子占据密度在早期呈指数增长。基于这一计算,我们提出了一个现象学处方,其中不稳定极点被减去。最后,我们证明了在阿贝尔情况下,不稳定场不影响介质诱导光子发射到我们的近似阶。
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Probes of the quark-gluon plasma and plasma instabilities
Penetrating probes in heavy-ion collisions, like jets and photons, are sensitive to the transport coefficients of the produced quark-gluon plasma, such as shear and bulk viscosity. Quantifying this sensitivity requires a detailed understanding of photon emission and jet-medium interaction in a non-equilibrium plasma. Up to now, such an understanding has been hindered by plasma instabilities which arise out of equilibrium and lead to spurious divergences when evaluating the rate of interaction of hard probes with the plasma. In this paper, we show that taking into account the time evolution of an unstable plasma cures these divergences. We calculate the time evolution of gluon two-point correlators in a setup with small initial momentum anisotropy and show that the gluon occupation density grows exponentially at early times. Based on this calculation, we argue for a phenomenological prescription where instability poles are subtracted. Finally, we show that in the Abelian case instability fields do not affect medium-induced photon emission to our order of approximation.
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