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Studies on proper time regularization and the QCD chiral phase transition

机译:研究适当时间正则化与QCD手性相转变

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We investigate the finite-temperature and zero quark chemical potential QCD chiral phase transition of strongly interacting matter within the two-flavor Nambu-JonaLasinio (NJL) model as well as the proper time regularization. We use two different regularization processes, as discussed in Refs. 36 and 37, separately, to discuss how the effective mass M varies with the temperature T. Based on the calculation, we find that the M of both regularization schemes decreases when T increases. However, for three different parameter sets, quite different behaviors will show up. The results obtained by the method in Ref. 36 are very close to each other, but those in Ref. 37 are getting farther and farther from each other. This means that although the method in Ref. 37 seems physically more reasonable, it loses the advantage in Ref. 36 of a small parameter dependence. In addition, we also, find that two regularization schemes provide similar results when T 100 MeV, while when T is larger than 100 MeV, the difference becomes obvious: the M calculated by the method in Ref. 36 decreases more rapidly than that in Ref. 37.
机译:我们研究了在双风味Nambu-Jonalasinio(NJL)模型中强烈相互作用的有限温度和零夸克化学潜力QCD手性相转变以及适当的时间正则化。我们使用两个不同的正则化过程,如refs中所述。 36和37分别讨论有效质量M如何随温度T.根据计算而变化,我们发现两个正则化方案的M在T增加时降低。但是,对于三个不同的参数集,将显示相当不同的行为。通过参考方法获得的结果。 36彼此非常靠近,但参考文献。 37彼此越来越远。这意味着虽然参考的方法。 37似乎身体更合理,它会在参考中失去优势。 36小参数依赖。此外,我们还发现,当T&,发现两个正则化方案提供类似的结果。 100 MeV,而T大于100 MEV时,差异变得明显:通过参考方法计算的M计算。 36比参考文献更快地减少。 37。

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