论文标题

中子星中强相变的强限制

Constraints on strong phase transitions in neutron stars

论文作者

Gorda, Tyler, Hebeler, Kai, Kurkela, Aleksi, Schwenk, Achim, Vuorinen, Aleksi

论文摘要

我们研究了中子恒星中密集相互作用物质的状态(EOS)方程强的一阶相变(PT)的电流界限,这是在简化的假设上,即在PT的任何一侧都可以通过简单的多面性形式近似EOS。我们构建了这种形式的大量eoss,将它们固定在高密度下的核密度和扰动QCD处的手性有效现场理论计算,并使它们受到高质量脉冲星和重力波观测的天体物理约束。在此设置中,我们发现PT允许具有较大半径的中子明星溶液,但前提是当过渡开始低于核饱和密度的两倍以下。我们还确定了当前未经数值 - 利用率研究未探索的允许PT的大参数空间。此外,我们找到了一个允许双星溶液的参数空间的小区域,尽管我们发现它们仅通过当前的天体物理约束。最后,我们发现,PT以外的高密度物质的较大核心可能位于一些稳定的中子星的中心,主要是质量较大的中子。

We study current bounds on strong first-order phase transitions (PTs) along the equation of state (EOS) of dense strongly interacting matter in neutron stars, under the simplifying assumption that on either side of the PT the EOS can be approximated by a simple polytropic form. We construct a large ensemble of possible EOSs of this form, anchor them to chiral effective field theory calculations at nuclear density and perturbative QCD at high densities, and subject them to astrophysical constraints from high-mass pulsars and gravitational-wave observations. Within this setup, we find that a PT permits neutron-star solutions with larger radii, but only if the transition begins below twice nuclear saturation density. We also identify a large parameter space of allowed PTs currently unexplored by numerical-relativity studies. Additionally, we locate a small region of parameter space allowing twin-star solutions, though we find them to only marginally pass the current astrophysical constraints. Finally, we find that sizeable cores of high-density matter beyond the PT may be located in the centers of some stable neutron stars, primarily those with larger masses.

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