Impact of the nuclear equation of state on the formation of twin stars

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR The European Physical Journal A Pub Date : 2025-02-11 DOI:10.1140/epja/s10050-025-01497-6
Nai-Bo Zhang, Bao-An Li
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Abstract

Twin stars-two stable neutron stars (NSs) with the same mass but different radii have long been proposed to appear as a consequence of a possible first-order phase transition in NS matter. Within a meta-model for the EOS of hybrid stars, we revisit the viability of twin stars and its dependence on numerous parameters characterizing the EOS of nuclear matter, quark matter, and the phase transition between them. While essentially no experimental constraint exists for the last two, parameters characterizing the EOS of neutron-rich nucleonic matter have been constrained within various ranges by terrestrial experiments and astrophysical observations. Within these ranges, the impact of nuclear EOS and crust-core transition density on the formation of twin stars is studied. It is found that the symmetry energy of neutron-rich nucleonic matter notably influences the formation of twin stars, particularly through its slope L and curvature \(K_\textrm{sym}\). Conversely, varying the EOS of symmetric nuclear matter within their currently known uncertainty ranges shows minimal influence on the formation of twin stars.

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核状态方程对孪生星形成的影响
双星——两颗质量相同但半径不同的稳定中子星(NSs)长期以来一直被认为是中子星物质可能发生一阶相变的结果。在混合恒星的EOS元模型中,我们重新审视了双星的生存能力及其对表征核物质、夸克物质以及它们之间相变的众多参数的依赖。虽然后两者基本上不存在实验约束,但表征富中子核物质EOS的参数已被地面实验和天体物理观测限制在不同的范围内。在此范围内,研究了核EOS和壳核跃迁密度对双星形成的影响。发现富中子核物质的对称能显著影响双星的形成,特别是通过其斜率L和曲率\(K_\textrm{sym}\)。相反,在对称核物质目前已知的不确定范围内改变其EOS对双星形成的影响最小。
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来源期刊
The European Physical Journal A
The European Physical Journal A 物理-物理:核物理
CiteScore
5.00
自引率
18.50%
发文量
216
审稿时长
3-8 weeks
期刊介绍: Hadron Physics Hadron Structure Hadron Spectroscopy Hadronic and Electroweak Interactions of Hadrons Nonperturbative Approaches to QCD Phenomenological Approaches to Hadron Physics Nuclear and Quark Matter Heavy-Ion Collisions Phase Diagram of the Strong Interaction Hard Probes Quark-Gluon Plasma and Hadronic Matter Relativistic Transport and Hydrodynamics Compact Stars Nuclear Physics Nuclear Structure and Reactions Few-Body Systems Radioactive Beams Electroweak Interactions Nuclear Astrophysics Article Categories Letters (Open Access) Regular Articles New Tools and Techniques Reviews.
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