论文标题
在旋转的全息图中的胶动力学和解料相变
Gluodynamics and deconfinement phase transition under rotation from holography
论文作者
论文摘要
我们研究了自下而上全息QCD方法中爱因斯坦 - 马克斯韦 - 迪拉顿(EMD)模型中对解料相变的旋转效应。通过构建一个旋转的黑洞,该旋转的黑洞应该是双重旋转的强耦合核物质的,我们研究了热力学量,包括纯gluon系统和旋转旋转的两种味道系统的熵密度,压力,能量密度,痕量异常,声速和特定热量。结果表明,这些热力学量将通过大角速度增强。此外,我们从这些热力学量以及反登录相变的顺序参数(即循环操作员)中提取相变的信息。结果表明,在$ t -ω$平面中,对于具有较小化学势的两种味道,相变是跨界的。过渡温度随角速度和化学势而缓慢降低。对于具有零化学势的纯Gluon系统,相变始终是一阶,而在有限的化学势下,临界终点(CEP)将存在于$ t -ω$平面中。
We investigate rotating effect on deconfinement phase transition in an Einstein-Maxwell-Dilaton(EMD) model in bottom-up holographic QCD approach. By constructing a rotating black hole, which is supposed to be dual to rotating strongly coupled nuclear matter, we investigate the thermodynamic quantities, including entropy density, pressure, energy density, trace anomaly, sound speed and specific heat for both pure gluon system and two-flavor system under rotation. It is shown that those thermodynamic quantities would be enhanced by large angular velocity. Also, we extract the information of phase transition from those thermodynamic quantities, as well as the order parameter of deconfinement phase transition, i.e. the loop operators. It is shown that, in the $T - ω$ plane, for two-flavor case with small chemical potential, the phase transition is always crossover. The transition temperature decreases slowly with angular velocity and chemical potential. For pure gluon system with zero chemical potential, the phase transition is always first order, while at finite chemical potential a critical end point(CEP) will present in the $T - ω$ plane.