论文标题

使用来自多学科物理学的最新信息来限制混合恒星状态的方程

Constraining the equation of state of hybrid stars using recent information from multidisciplinary physics

论文作者

Shirke, Swarnim, Ghosh, Suprovo, Chatterjee, Debarati

论文摘要

在中子恒星核心中存在的超高密度下,预计可能会发生从重型质量到夸张的夸克物质的相变。这种相变会影响状态(EO)的基本方程以及中子星的可观察到的天体物理特性。然后,将EOS模型预测与来自多通信器信号的天文数据进行比较,然后为我们提供了探测密集物质行为的机会。在这项工作中,我们通过对核计算,多元时间计算,多时间计算施加最先进的约束来限制中子星中EOS模型的允许参数空间(相对论平均值)和夸克物质(BAG模型)扇区。我们系统地研究了使用截止过滤器方案以及参数之间的相关性以及中子星天体物理可观察物的相关性,从而系统地研究了每个约束对不确定性参数空间的影响。使用约束,我们获得了最大NS质量,最大中央密度以及NS半径和潮汐变形的限制。尽管PQCD约束仅在非常高的密度下有效,但它们会显着降低夸克模型的参数空间。我们还得出结论,天体物理数据支持袋子参数B的高值,并分布了混合恒星中纯夸克物质核心的存在。

At the ultra-high densities existing in the core of neutron stars, it is expected that a phase transition from baryonic to deconfined quark matter may occur. Such a phase transition would affect the underlying equation of state (EoS) as well as the observable astrophysical properties of neutron stars. Comparison of EoS model predictions with astronomical data from multi-messenger signals then provides us an opportunity to probe the behaviour of dense matter. In this work, we restrict the allowed parameter space of EoS models in neutron stars for both nucleonic (relativistic mean field model) and quark matter (bag model) sectors by imposing state-of-the-art constraints from nuclear calculations, multi-messenger astrophysical data and perturbative QCD (pQCD). We systematically investigate the effect of each constraint on the parameter space of uncertainties using a cut-off filter scheme, as well as the correlations among the parameters and with neutron star astrophysical observables. Using the constraints, we obtain limits for maximum NS mass, maximum central density, as well as for NS radii and tidal deformability. Although pQCD constraints are only effective at very high densities, they significantly reduce the parameter space of the quark model. We also conclude that astrophysical data supports high values of the bag parameter B and disfavors the existence of a pure quark matter core in hybrid stars.

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