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arXiv:2106.04204·v3·Nuclear Theory

Constraints on the phase transition and nuclear symmetry parameters from PSR and multimessenger data of other neutron stars

Shao-Peng Tang🇨🇳 · Jin-Liang Jiang🇨🇳 · Ming-Zhe Han🇨🇳 · Yi-Zhong Fan🇨🇳 · Da-Ming Wei🇨🇳

Abstract

Recently, the radius of neutron star (NS) PSR J0740+6620 was measured by Neutron Star Interior Composition Explorer (NICER) and an updated measurement of neutron skin thickness of Pb () was reported by the PREX-II experiment. These new measurements can help us better understand the unknown equation of state (EOS) of dense matter. In this work, we adopt a hybrid parameterization method, which incorporates the nuclear empirical parameterization and some widely used phenomenological parameterizations, to analyze the results of nuclear experiments and astrophysical observations. With the joint Bayesian analysis of GW170817, PSR J0030+0451, and PSR J0740+6620, the parameters that characterize the ultradense matter EOS are constrained. We find that the slope parameter is approximately constrained to MeV, which predicts by using the universal relation between and . The bulk properties of canonical NS (e.g., and ) as well as the pressure () at two times the nuclear saturation density are well constrained by the data; i.e., , , and are approximately constrained to km, , and , respectively. Besides, we find that the Bayes evidences of the hybrid star and normal NS assumptions are comparable, which indicates that current observation data are compatible with quarkyonic matter existing in the core of massive star. Finally, in the case of normal NS assumption, we obtain a constraint for the maximum mass of nonrotating NS . All of the uncertainties reported above are for 68.3% credible levels.

Comments: 12 pages, 7 figures, published in PRD

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