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Impact of the Nuclear Equation of State on the Stability of Hybrid Neutron Stars

机译:核态方程对混合中子星稳定性的影响

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We construct a set of equations of state (EoS) of dense and hot matter with a 1st order phase transition from a hadronic system to a deconfined quark matter state. In this two-phase approach, hadrons are described using the relativistic mean field theory with different parametrisations and the deconfined quark phase is modeled using vBag, a bag–type model extended to include vector interactions as well as a simultaneous onset of chiral symmetry restoration and deconfinement. This feature results in a non–trivial connection between the hadron and quark EoS, modifying the quark phase beyond its onset density. We find that this unique property has an impact on the predicted hybrid (quark core) neutron star mass–radius relations.
机译:我们构造了一组稠密和热物质的状态方程(EoS),它们具有从强子系统到限定的夸克物质状态的一阶相变。在这种两阶段方法中,使用相对论平均场理论描述了具有不同参数的强子,并使用vBag建模了无限制的夸克相,vBag是袋型模型,扩展为包括矢量相互作用以及手征对称性恢复的同时发作和解除约束。此功能导致强子和夸克EoS之间具有非平凡的联系,使夸克相超出了其起始密度。我们发现,这种独特的性质对预测的混合(夸克核)中子星质量半径关系有影响。

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