论文标题
奇怪的夸克(Quark)
Strange quark matter from a baryonic approach
论文作者
论文摘要
我们基于表现出手性相变的低密度核物质特性的密集物质模型,其中包括通过超声波自由度的陌生性。仅来自核物质的经验约束就可以允许各种情况,从相对较低的密度下的强一阶手性转变到较高的密度下的较弱的过渡,即使是较高的过渡,甚至超出了允许范围的边缘的平稳交叉。可以选择模型参数,以便在渐近较大的密度上,手性恢复的相包含陌生性,声音速度接近保形极限,从而导致高密度相似,类似于解剖的夸克物质。此外,如果要求模型重现足够大的紧凑型恒星,则允许的参数范围会大大缩小,例如,对对称能的差异斜率参数的范围非常狭窄,$ l \ simeq(88-92)\,{\ rmMev} $。我们还发现,对于允许的参数范围而言,陌生性不会以手性损坏的相位的超声形式出现,并且手性转变是一阶的。由于其统一的方法和相对简单性 - 在这里我们将自己限制为零温度和平均场近似 - 将来可以使用该模型在紧凑型恒星条件下在手性相变的附近研究密集的物质,例如计算表面张力或研究空间不合理相。
We construct a model for dense matter based on low-density nuclear matter properties that exhibits a chiral phase transition and that includes strangeness through hyperonic degrees of freedom. Empirical constraints from nuclear matter alone allow for various scenarios, from a strong first-order chiral transition at relatively low densities through a weaker transition at higher densities, even up to a smooth crossover not far beyond the edge of the allowed range. The model parameters can be chosen such that at asymptotically large densities the chirally restored phase contains strangeness and the speed of sound approaches the conformal limit, resulting in a high-density phase that resembles deconfined quark matter. Additionally, if the model is required to reproduce sufficiently massive compact stars, the allowed parameter range is significantly narrowed down, resulting for instance in a very narrow range for the poorly known slope parameter of the symmetry energy, $L\simeq (88-92)\, {\rm MeV}$. We also find that for the allowed parameter range strangeness does not appear in the form of hyperons in the chirally broken phase and the chiral transition is of first order. Due to its unified approach and relative simplicity - here we restrict ourselves to zero temperature and the mean-field approximation - the model can be used in the future to study dense matter under compact star conditions in the vicinity of the chiral phase transition, for instance to compute the surface tension or to investigate spatially inhomogeneous phases.