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Deconfinement phase transition in neutron star matter

机译:中子星物质中的解构相转变

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The transition from hadron phase to strange quark phase in dense matter is investigated. Instead of using the conventional bag model in quark sect, we achieve the confinement by a density-dependent quark mass derived from in-medium chiral condensates, with a thermodynamic problem improved. In nuclear slot, we adopt the equation of state from Brueckner-Bethe-Goldstone approach with three-body force. It is found that the mixed phase can occur, for reasonable confinement parameter, near the normal saturation density, and transit to pure quark matter at 4-5 times the saturation, which is quite different from the previous results from other quark models that pure quark phase can not appear at neutron-star densities.
机译:研究了从强子相到致密物质以奇怪夸克相的过渡。而不是在夸克派中使用传统的袋模型,我们通过衍生自中式手性缩合物的密度依赖性夸克质量来实现限制,具有改善热力学问题。在核槽中,我们采用了从Brueckner-Bethe-Goldstone方法的状态方程,三体力量。发现混合相位可以发生合理的限制参数,在正常饱和密度附近,并在饱和度的4-5倍以4-5倍的饱和度到纯夸克,这与纯夸克的其他夸克模型的结果完全不同阶段不能出现在中子星密度。

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