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Fluctuations in cool quark matter and the phase diagram of quantum chromodynamics

机译:冷却夸克物质的波动及量子色动力学相图

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We consider the phase diagram of hadronic matter as a function of temperature, T, and baryon chemical potential, μ. Currently the dominant paradigm is a line of first order transitions which ends at a critical endpoint. In this work we suggest that spatially inhomogeneous phases are a generic feature of the hadronic phase diagram at nonzero μ and low T. Familiar examples are pion and kaon condensates. At higher densities, we argue that these condensates connect onto chiral spirals in a quarkyonic regime. Both of these phases exhibit the spontaneous breaking of a global U(1) symmetry and quasilong range order, analogous to smectic liquid crystals. We argue that there is a continuous line of first order transitions which separate spatially inhomogeneous from homogeneous phases, where the latter can be either a hadronic phase or a quark-gluon plasma. While mean field theory predicts that there is a Lifshitz point along this line of first order transitions, in three spatial dimensions strong infrared fluctuations wash out any Lifshitz point. Using known results from inhomogeneous polymers, we suggest that instead there is a Lifshitz regime. Nonperturbative effects are large in this regime, where the momentum dependent terms for the propagators of pions and associated modes are dominated not by terms quadratic in momenta, but quartic. Fluctuations in a Lifshitz regime may be directly relevant to the collisions of heavy ions at (relatively) low energies, √s/A∶1 → 20 GeV.
机译:我们考虑作为温度,T和Baryon化学电位,μ的函数的HORRONIC物质的相图。目前主导范式是一系列在关键终点中结束的一行。在这项工作中,我们建议空间不均匀阶段是非零μ和低T.熟悉的例子处的幂声相图的通用特征是孔和kaon凝结物。在更高的密度下,我们认为这些凝聚液在夸克方案中连接到手性螺旋上。这两种阶段都表现出全球U(1)对称性和Quasilong范围顺序的自发破碎,类似于椎体晶体。我们认为存在连续的一线第一阶转变,其从均匀阶段分开空间不均匀,其中后者可以是辐射相或夸克 - 胶质等离子体。虽然平均场理论预测,沿着这系列的一流过渡线有一个Lifshitz点,在三个空间尺寸强烈的红外波动冲出任何Lifshitz点。使用来自不均匀聚合物的已知结果,我们建议使用Lifshitz制度。在这一制度中,非触发效果很大,其中,接头和相关模式的传播者的动量依赖性术语不是在术语中二次立体的阶段,但是。 Lifshitz制度的波动可以与(相对)低能量,√S/ ade1→20 gev的碰撞直接相关。

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