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Quark-hadron phase structure, thermodynamics, and magnetization of QCD matter

机译:QCD物质的夸克强子相结构,热力学和磁化

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The SU(3) Polyakov linear-sigma model (PLSM) is systematically implemented to characterize the quark-hadron phase structure and to determine various thermodynamic quantities and the magnetization of quantum chromodynamic (QCD) matter. Using mean-field approximation, the dependence of the chiral order parameter on a finite magnetic field is also calculated. Under a wide range of temperatures and magnetic field strengths, various thermodynamic quantities including trace anomaly, speed of sound squared, entropy density, and specific heat are presented, and some magnetic properties are described as well. Where available these results are compared to recent lattice QCD calculations. The temperature dependence of these quantities confirms our previous finding that the transition temperature is reduced with the increase in the magnetic field strength, i.e. QCD matter is characterized by an inverse magnetic catalysis. Furthermore, the temperature dependence of the magnetization showing that QCD matter has paramagnetic properties slightly below and far above the pseudo-critical temperature is confirmed as well. The excellent agreement with recent lattice calculations proves that our QCD-like approach (PLSM) seems to possess the correct degrees of freedom in both the hadronic and partonic phases and describes well the dynamics deriving confined hadrons to deconfined quark-gluon plasma.
机译:系统地实施SU(3)Polyakov线性-Sigma模型(PLSM)以表征夸克 - 强子相结构,并确定各种热力学量和量子色动力学(QCD)物质的磁化。使用平均场近似,还计算了手工阶参数对有限磁场的依赖性。在各种温度和磁场强度下,提出了各种热力学量,包括痕量异常,声音平方速度,熵密度和特定热量,并且还描述了一些磁性。可以使用这些结果的地方与最近的格子QCD计算进行了比较。这些数量的温度依赖性证实我们先前发现,随着磁场强度的增加,即QCD物质的表征是逆磁性催化的特征在于转变温度。此外,磁化的温度依赖性表明QCD物质具有略微低于伪临界温度的顺磁性特性。与最近的格子计算的良好协议证明了我们的QCD样方法(PLSM)似乎在屈证和局部阶段都具有正确的自由度,并描述了导出局限于克罗克 - 甘仑等离子体的动态。

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