论文标题

通过致密的核物质估计中子星可观察物的值和变化

Estimating the values and variations of neutron star observables by dense nuclear matter properties

论文作者

Pósfay, Péter, Barnaföldi, Gergely Gábor, Jakovác, Antal

论文摘要

最近在PSR J0030+0451上进行的更好的观察数据最近在紧凑型恒星内部存在的超密集核物质的性质上增加了独特的质量 - 拉迪乌斯约束。这样的宏观数据进一步限制了微观模型,基本相互作用及其参数,但是由于面包质问题而具有合理的边缘。在这里,我们的目标是确定起源并量化核物质模型的理论不确定性的大小。 此处介绍了一项关于不同交互项和扩展$σ$ - $ω$模型在拉格朗日中的核参数值的效果的详细研究。将状态方程插入到Tolman-Oppenheimer-volkoff方程中,并计算了中子星的可观察到的参数。 我们确定最佳的有效质量是修改宏观可观察值的最相关的物理参数。此外,压缩性和对称能量项分别对此产生一个数量级的顺序。我们计算了紧凑型恒星的最大质量与物理相关参数范围内的这些微观核参数值之间的线性关系。根据质量观察数据,我们估计了PSR J1614-2230,PSR J0348+0432和PSR J0740+6620的半径的大小,包括由模型的相互作用项及其参数值选择引起的理论不确定性。

Recent NICER observation data on PSR J0030+0451 has recently added a unique mass-radius constraint on the properties of the superdense nuclear matter existing in the interior of compact stars. Such a macroscopic data restrict further the microscopical models, elementary interactions, and their parameters, however, with reasonable margin because of the masquarade problem. Here our goal is to identify the origin and quantify the magnitude of the theoretical uncertainties of the nuclear matter models. A detailed study on the effect of different interaction terms and the nuclear parameter values in the Lagrangian of the extended $σ$-$ω$ model is presented here. The equation of state was inserted to the Tolman--Oppenheimer--Volkoff equation and observable parameters of the neutron star were calculated. We identified, that the optimal Landau effective mass is the most relevant physical parameter modifying the macroscopic observable values. Moreover, the compressibility and symmetry energy terms just generate one-one order of magnitude smaller effect to this, respectively. We calculated the linear relations between the maximal mass of a compact star and these microscopic nuclear parameter values within the physical relevant parameters range. Based on the mass observational data we estimated the magnitude of the radii of PSR J1614-2230, PSR J0348+0432, and PSR J0740+6620 including theoretical uncertainties arising from the models' interaction terms and their parameter values choices.

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