Based on the two flavor NJL model with a proper time regularization, we used stationary wave condition (SWC) for the first time to study the influence of the finite volume effects on the chiral phase transition of quark matter at finite temperature. It is found that when the cubic volume size L is large than LSWC = 500 fm, the chiral quark condensate is indistinguishable from that max at L = $\infinity$,Here it should be noted that 500 fm is far greater than the size of QGP produced at laboratory and the lattice QCD simulation space size. It is also much larger than the previous limit size LAPBC = 5 fm estimated by the commonly used anti-periodic boundary condition (APBC). max We also found that when the space size L is less than LSWC = 0.25 fm, the spontaneous symmetry min breaking concept is no longer valid. In addition, we first introduce the spatial susceptibility, and through the study of the spatial susceptibility, it was revealed for the first time that the chiral phase transition caused by the finite volume effects in the nonchiral limit is a crossover.
翻译:根据具有适当时间正规化的两种调味NJL模型,我们首次使用固定波状条件(SWC)来研究有限体积效应对定温温度下夸克物质在手性阶段过渡的影响,发现当立方体体积LSWC大于LSWC=500英尺时,天体夸克冷凝土与最大值L=$=美元无差异,这里应当指出,500英尺远大于实验室生产的QGP和拉蒂斯QCD模拟空间大小,也比以前LAPBC=5英尺的限值大小大得多,通常使用的反周期边界条件(APBC)估计,最大我们还发现,当空间大小LSWC=0.25英尺时,自发的对称分解概念不再有效。此外,我们首先引入了空间敏感度,通过对空间敏感度的研究,第一次发现,由于定体体积的大小影响,使手力阶段过渡超越了非空间敏感度的极限。