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Quark deconfinement in protoneutron star cores: Effect of color superconductivity within the MIT bag model

机译:原质子星核中的夸克脱限:MIT袋模型中颜色超导的影响

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Weanalyze the effect of color superconductivity in the transition from hot hadron matter to quark matter in the presence of a gas of trapped electron neutrinos. To describe the strongly interacting matter we adopt a two-phase picture in which the hadronic phase is described by means of a non-linear Walecka model and just deconfined matter through the MIT bag model including color superconductivity.Weimpose flavor conservation during the transition in such a way that just deconfined quark matter is transitorily out of equilibrium with respect to weak interactions. Our results show that color superconductivity facilitates the transition for temperatures below T_c. This effect may be strong if the superconducting gap is large enough. As in the previous work, we find that the trapped neutrinos increase the critical density for deconfinement; however, if the just deconfined phase is color superconducting this effect is weaker than if deconfined matter is unpaired. We also explore the effect of different parametrizations of the hadronic equation of state (GM1 and NL3) and the effect of hyperons in the hadronic phase. We compare our results with those previously obtained employing the Nambu-Jona-Lasinio model in the description of just deconfined matter and show that they are in excellent agreement if the bag constant B is properly chosen.
机译:我们分析了在存在捕获的电子中微子气体的情况下,从热强子物质向夸克物质过渡时颜色超导的影响。为了描述强相互作用的物质,我们采用两相图,其中强子相是通过非线性Walecka模型描述的,而通过MIT袋模型仅是限定物质,包括颜色超导性。就弱相互作用而言,刚解开夸克物质的方法暂时无法达到平衡。我们的结果表明,颜色超导性有助于温度低于T_c的转变。如果超导间隙足够大,则此效果可能很强。与以前的工作一样,我们发现被困的中微子增加了解除约束的临界密度。但是,如果刚限定的相是彩色超导,则此效果比未限定的相未配对的情况要弱。我们还探讨了强子状态方程(GM1和NL3)的不同参数化的影响以及强子在强子相中的影响。我们将我们的结果与先前使用Nambu-Jona-Lasinio模型获得的结果进行了比较,仅描述了受限物质,并表明,如果正确选择袋常数B,它们的一致性很好。

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