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Symmetry energy at supra-saturation densities via the gravitational waves from GW170817

机译:通过GW170817的引力波在Supra饱和密度下对称能量

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Motivated by the historical detection of gravitational waves from GW170817, the neutron star and the neutron drop, i.e., a certain number of neutrons confined in an external field, are systematically investigated by ab initio calculations as well as the nonrelativistic and relativistic state-of-the-art density functional theories. Strong correlations are found among the neutron star tidal deformability, the neutron star radius, the rootmean-square radii of neutron drops, and the symmetry energies of nuclear matter at supra-saturation densities. For dense matter composed of nucleons only, these correlations, together with the upper limit on the tidal deformability extracted from GW170817, provides the constraints for the neutron star radii, the neutron drop radii, and the symmetry energy at twice saturation density as R-1.4 M Theta <= 13.4 +/- 0.2 km, R-nd <= 2.41 +/- 0.10 fm, and E-sym (2(rho 0) ) <= 60.7 +/- 10.9 MeV, respectively.
机译:通过GW170817的历史检测来自GW170817的历史检测,中子星和中子下降,即,通过AB Initio计算系统地研究了外部领域中限制的一定数量的中子,以及非素描和相对论的状态 最艺术密度功能理论。 中子星潮汐可变形性,中子星半径,中子滴的铲子 - 方形半径以及在饱和密度下核物质的对称能量存在强的相关性。 对于由核磁组成的致密物质,这些相关性与GW170817提取的潮汐变形性的上限一起为中子星半径,中子滴半径和对称能量的约束提供了两次饱和密度,如R-1.4 m theta <= 13.4 +/- 0.2 km,r-nd <= 2.41 +/- 0.10 fm,以及e-sym(2(rho 0))<= 60.7 +/- 10.9 mev。

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