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Parity Doubling and the Dense-Matter Phase Diagram under Constraints from Multi-Messenger Astronomy

机译:多信使天文约束下的奇偶校验和稠密相图

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We extend the recently developed hybrid quark–meson–nucleon model by augmenting a six-point scalar interaction and investigate the consequences for neutron-star sequences in the mass–radius diagram. One of the characteristic features of the model is that the chiral symmetry is restored within the hadronic phase by lifting the mass splitting between chiral partner states, before quark deconfinement takes place. At low temperature and finite baryon density, the model predicts a first- or second-order chiral phase transition, or a crossover, depending on the expectation value of a scalar field, and a first-order deconfinement phase transition. We discuss two sets of free parameters, which result in compact-star mass–radius relations that are at tension with the combined constraints for maximum-mass ( 2 M ⊙ ) and the compactness (GW170817). We find that the most preferable mass–radius relations result in isospin-symmetric phase diagram with rather low temperature for the critical point of the chiral phase transition.
机译:我们通过增加六点标量相互作用来扩展最近开发的混合夸克-介子-核子模型,并在质量半径图中研究中子星序列的后果。该模型的特征之一是在夸克去约束作用发生之前,通过解除手性伴侣状态之间的质量分裂,在强子相中恢复了手性对称性。在低温和有限重子密度下,该模型根据标量场的期望值和一阶去约束相变来预测一阶或二阶手性相变或交叉。我们讨论了两组自由参数,这些参数导致紧密的恒星质量半径关系处于最大质量(2 M⊙)和紧密度(GW170817)的组合约束下。我们发现,最理想的质量半径关系导致手性相变的临界点具有相当低的温度的等旋对称相图。

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