arXiv:1904.12477·v1·High Energy Astrophysical Phenomena
Role of the Symmetry Energy on the Structure of Neutron Stars with Unified Equations of State
Nicolas Chamel🇧🇪 · John Michael Pearson🇨🇦 · Alexander Y. Potekhin🇷🇺 · Anthea F. Fantina🇫🇷 · Camille Ducoin🇫🇷 · Anup Dutta🇮🇳 · Stéphane Goriely🇧🇪 · Loïc Perot🇧🇪
Abstract
The role of the symmetry energy on the internal constitution and the global structure of a cold nonaccreted neutron star is studied using a set of unified equations of state. Based on the nuclear energy-density functional theory, these equations of state provide a thermodynamically consistent treatment of all regions of the star and were calculated using the four different Brussels-Montreal functionals BSk22, BSk24, BSk25 and BSk26. Our predictions are compared to various constraints inferred from astrophysical observations including the recent detection of the gravitational wave signal GW170817 from a binary neutron-star merger.
Comments: 15 pages, 6 figures. To appear in the AIP Conference Proceedings of the Xiamen-CUSTIPEN Workshop on the EOS of Dense Neutron-Rich Matter in the Era of Gravitational Wave Astronomy (January 3 - 7, 2019, Xiamen, China)