论文标题
QCD相图二元性的致密重型物质和应用
Dense Baryonic Matter and Applications of QCD Phase Diagram Dualities
论文作者
论文摘要
最近发现,量子染色体动力学(QCD)相图具有手性对称性断裂和pion缩合之间的双重性。 QCD动机玩具模型首次揭示了这一点。然后在有效的模型中也证明了这一点,并发现了新的其他二元性。我们简要回顾了这个故事的主要特征,然后讨论其应用程序作为探索QCD相结构的工具。最具吸引力的应用是在QCD相图上以较大的Baryon密度获得结果。从$ 1/n_ {c} $普遍性中获取这个想法,有人认为,借助二元性来规避标志问题的情况似乎是合理的。还讨论了是否应该通过手性失衡来催化或抗催化对称对称性。可以说,在观察到催化的晶格结果(第一个原理方法)之后,问题是在晶格结果(第一个原理方法)之后解决的。但是他们使用了一个杂质的斜质质量,因此仍然有趣地说明事实是这种情况。仅通过双重性特性显示了手性对称性破坏的催化。因此,考虑到我们的结果和较早的晶格模拟,人们可能会声称这个问题已经解决。证明二元性可用于获得新的结果。例如,展示了如何从QCD相图具有Isopin不对称性的QCD相图中获得密集的夸克物质物质(有可能发生不均匀相)。
Recently it has been found that quantum chromodynamics (QCD) phase diagram possesses a duality between chiral symmetry breaking and pion condensation. For the first time this was revealed in the QCD motivated toy model. Then it was demonstrated in effective models as well and new additional dualities being found. We briefly recap the main features of this story and then discuss its applications as a tool to explore the QCD phase structure. The most appealing application is the possibility of getting the results on the QCD phase diagram at large baryon density. Taking the idea from large $1/N_{c}$ universalities it was argued that the scenario of circumventing the sign problem with the help of dualities seems plausible. It is also discussed that there is a persistent problem about whether there should be catalysis or anti-catalysis of chiral symmetry breaking by chiral imbalance. One can probably say that the issue is settled after lattice results (first principle approach), where the catalysis was observed. But they used an unphysically large pion mass so it is still interesting to get additional indications that this is the case. It is shown just by the duality property that there exists catalysis of chiral symmetry breaking. So, having in mind our results and the earlier lattice simulations, one can probably claim that this issue is settled. It is demonstrated that the duality can be used to obtain new results. As an example, it is showcased how the phase structure of dense quark matter with chiral imbalance (with possibility of inhomogeneous phases) can be obtained from the knowledge of a QCD phase diagram with isopin asymmetry.