论文标题

$π$和$ρ$ MESON的热属性

Thermal properties of $π$ and $ρ$ meson

论文作者

Gao, Fei, Ding, Minghui

论文摘要

我们在有限温度下计算了$π$和$ρ$ MESON的杆质量和衰减常数,在Dyson-Schinginger方程和伯特 - 盐方程方法的框架中。低于过渡温度,斜杆质量单调增加,而$ρ$梅森似乎独立于温度。高于过渡温度,Pion质量接近自由场限制,而$ρ$ MESON的大约是该极限的两倍。 Pion和$ρ$ Meson Decay常数的纵向投影的行为与手性对称的顺序参数相似,而$ρ$ Meson衰减常数的横向投影随着温度的增加而单调上升。衰减常数和手性敏感性的拐点得到相同的相变温度。尽管在该方案中无法访问介子的热宽度,但可以通过分析培养基中的Gell-Mann-Oakes-Renner(GMOR)关系来讨论。强子观察物的这些热性能将帮助我们了解有限温度下的QCD阶段,并可以用于改善实验数据分析和重离子碰撞模拟。

We computed the pole masses and decay constants of $π$ and $ρ$ meson at finite temperature in the framework of Dyson-Schwinger equations and Bethe-Salpeter equations approach. Below transition temperature, pion pole mass increases monotonously, while $ρ$ meson seems to be temperature independent. Above transition temperature, pion mass approaches the free field limit, whereas $ρ$ meson is about twice as large as that limit. Pion and the longitudinal projection of $ρ$ meson decay constants have similar behaviour as the order parameter of chiral symmetry, whereas the transverse projection of $ρ$ meson decay constant rises monotonously as temperature increases. The inflection point of decay constant and the chiral susceptibility get the same phase transition temperature. Though there is no access to the thermal width of mesons within this scheme, it is discussed by analyzing the Gell-Mann-Oakes-Renner (GMOR) relation in medium. These thermal properties of hadron observables will help us understand the QCD phases at finite temperature and can be employed to improve the experimental data analysis and heavy ion collision simulations.

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