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The QCD phase diagram, equation of state, and heavy ion collisions

机译:QCD相图,状态方程式和重离子碰撞

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摘要

After some historic remarks and a brief summary of recent theoretical news about the QCD phases, we turn to the issue of freeze-out in heavy ion collisions. We argue that the chemical freeze-out line should actually consist of two crossing lines of different nature. We also consider some inelastic reactions which occur after chemical freeze-out, emphasizing the role of overpopulation of pions. The hydrodynamics (with or without hadronic afterburner) explains SPS/RHIC data on radial and elliptic flow in unexpected detail, for different particles, collision energies, and impact parameters. Apart from the Equation of State (EoS), it has basically no free parameters. The EoS which describes these data best agrees quite well with the lattice predictions, with the QGP latent heat Deltais an element of approximate to 800 Mev/fm(3). Other phenomena at RHIC, such as "jet quenching" and huge ellipticity at large p(t), also point toward very rapid entropy production. Its mechanism remains an outstanding open problem: at the end we discuss a recent application of the instanton/sphaleron mechanism. The gg collisions with roots = 2 - 3 GeV may result not in mini-jets but rather in the production of sphaleron-like gluomagnetic clusters, which are classically unstable and promptly decay into several gluons and quarks, in sperical mini-Bangs. [References: 51]
机译:经过一些历史性的评论和有关QCD相的最新理论新闻的简要概述之后,我们转向重离子碰撞中的冻结问题。我们认为化学冻结线实际上应该由性质不同的两条交叉线组成。我们还考虑了化学冻结后发生的一些非弹性反应,强调了小子过剩的作用。流体动力学(带有或不带有强子加力燃烧器)以不同的粒子,碰撞能量和冲击参数意外地详细说明了径向和椭圆流的SPS / RHIC数据。除了状态方程(EoS)外,它基本上没有自由参数。描述这些数据的EoS与晶格预测最吻合,QGP潜热Deltais约为800 Mev / fm(3)。 RHIC的其他现象,例如“喷射淬火”和在大p(t)处的大椭圆率,也表明熵的产生非常迅速。它的机制仍然是一个悬而未决的悬而未决的问题:最后,我们讨论了瞬时/ sphaleron机制的最新应用。与根= 2-3 GeV的gg碰撞可能不会导致产生小型喷气机,而是会导致产生类似于司巴隆的地磁团簇,这些团簇通常是不稳定的,并会在有序的微型邦斯中迅速衰变成几个胶子和夸克。 [参考:51]

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