The impact of the equation of state (EoS) crust-core matching procedure on neutron star (NS) properties is analyzed within a meta-modeling approach. Using a Taylor expansion to parametrize the core equation of state (EoS) and the SLy4 crust EoS, we create two distinct EoS datasets employing two matching procedures. Each EoS describes cold NS matter in a beta equilibrium that is thermodynamically stable and causal. It is shown that the crust-core matching procedure affects not only the crust-core transition but also the nuclear matter parameter space of the core EoS, and thus the most probable nuclear matter properties. An uncertainty of as much as 5% (8%) on the determination of low mass NS radii (tidal deformability) is attributed to the complete matching procedure, including the effect on core EoS. By restricting the analysis, imposing that the same set of core EoS is retained in both matching procedures, the uncertainty on the NS radius drops to 3.5% and below 1.5% for 1.9M(circle dot). Moreover, under these conditions, the crust-core matching procedure has a strong impact on the Love number k(2), of almost 20% for 1.0M(circle dot) stars and 7% for 1.9M(circle dot) stars, but it shows a very small impact on the tidal deformability Lambda, below 1%.
机构:
Department of Physics and Electronic Science, Changsha University of Science and Technology
Hunan Provincial Key Laboratory of Flexible Electronic Materials Genome EngineeringDepartment of Physics and Electronic Science, Changsha University of Science and Technology
陈晏军
程子鹏
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Department of Physics and Electronic Science, Changsha University of Science and TechnologyDepartment of Physics and Electronic Science, Changsha University of Science and Technology
程子鹏
贺彬广
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Department of Physics and Electronic Science, Changsha University of Science and TechnologyDepartment of Physics and Electronic Science, Changsha University of Science and Technology