论文标题
在临界点和一阶线处的夸克 - 格鲁隆等离子体的传输系数
Transport coefficients of the quark-gluon plasma at the critical point and across the first-order line
论文作者
论文摘要
自下而上的爱因斯坦 - 马克斯韦 - 迪拉顿全息模型首次用于计算临界点上热和bary富富的夸克 - 格鲁隆等离子体的几个传输系数的行为,并在相图中的一阶相变。所研究的可观察物是剪切和散装粘度,重子扩散,导热率,喷射淬灭参数$ \ hat {q} $,以及重量夸克阻力和Langevin扩散系数。这些计算为这些系数提供了一个现象学上有希望的估计值,因为我们的模型在零和有限的Baryon密度下定量地重现了晶格QCD热力学结果,除了自然融合了夸克 - 葡萄糖等质量的几乎完美的流动性。我们发现,Baryon电荷的扩散以及剪切和散装粘度会随着Baryon密度的增加而受到抑制,这表明该培养基在大密度下变得更接近完美的流动性。另一方面,随着密度的增加,射流淬灭参数和重量夸克的扩散会增强。在越过一阶相变线时,观察值在临界点开发无限斜率时显示出不连续的差距。与不同的运输系数相关的过渡温度在交叉区域不同,但发现在临界点会收敛。
A bottom-up Einstein-Maxwell-Dilaton holographic model is used to compute, for the first time, the behavior of several transport coefficients of the hot and baryon-rich strongly coupled quark-gluon plasma at the critical point and also across the first-order phase transition line in the phase diagram. The observables under study are of the shear and bulk viscosities, baryon diffusion, thermal conductivity, the jet quenching parameter $\hat{q}$, as well as the heavy-quark drag force and Langevin diffusion coefficients. These calculations provide a phenomenologically promising estimate for these coefficients, given that our model quantitatively reproduces lattice QCD thermodynamics results, both at zero and finite baryon density, besides naturally incorporating the nearly-perfect fluidity of the quark-gluon plasma. We find that the diffusion of baryon charge, and also the shear and bulk viscosities, are suppressed with increasing baryon density, indicating that the medium becomes even closer to perfect fluidity at large densities. On the other hand, the jet quenching parameter and the heavy-quark momentum diffusion are enhanced with increasing density. The observables display a discontinuity gap when crossing the first-order phase transition line, while developing an infinite slope at the critical point. The transition temperatures associated with different transport coefficients differ in the crossover region but are found to converge at the critical point.