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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Extracting nuclear symmetry energies at high densities from observations of neutron stars and gravitational waves
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Extracting nuclear symmetry energies at high densities from observations of neutron stars and gravitational waves

机译:从中子恒星和引力波的观察中提取高密度的核对称能量

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.By numerically inverting the Tolman-Oppenheimer-Volkov (TOV) equation using an explicitly isospin-dependent parametric Equation of State (EOS) of dense neutron-rich nucleonic matter, a restricted EOS parameter space is established using observational constraints on the radius, maximum mass, tidal deformability and causality condition of neutron stars (NSs). The constraining band obtained for the pressure as a function of energy (baryon) density is in good agreement with that extracted recently by the LIGO+Virgo Collaborations from their improved analyses of the NS tidal deformability in GW170817. Rather robust upper and lower boundaries on nuclear symmetry energies are extracted from the observational constraints up to about twice the saturation density 0 of nuclear matter. More quantitatively, the symmetry energy at 20 is constrained to E sym (20)=46.9 +/- 10.1 MeV excluding many existing theoretical predictions scattered between E sym (20)=15 and 100 MeV. Moreover, by studying variations of the causality surface where the speed of sound equals that of light at central densities of the most massive neutron stars within the restricted EOS parameter space, the absolutely maximum mass of neutron stars is found to be 2.40 M approximately independent of the EOSs used. This limiting mass is consistent with findings of several recent analyses and numerical general relativity simulations about the maximum mass of the possible super-massive remanent produced in the immediate aftermath of GW170817. deformability
机译:。通过使用富含致密中子核心物质的明确索波旋转依赖性参数方程(EOS)的明确索波旋转的参数方程,在数控 - oppenheimer-Volkov(ToV)方程中,使用了半径的观察限制来建立受限制的EOS参数空间中子恒星(NSS)的质量,潮汐变形性和因果关系条件。作为能量(Baryon)密度的压力获得的约束带与最近通过Ligo + Virgo合作从GW170817中的NS潮汐可变形性的改进分析中提取的最近提取。相当于核对称能量的鲁棒的上部和下边界从观察约束中提取到核物质的饱和密度0的两倍。更定量地,20的对称能量被约束为E Sym(20)= 46.9 +/- 10.1 mev,除了许多现有的理论预测中散布在E Sym(20)= 15和100 MeV之间。此外,通过研究声音速度等于在受限制的EOS参数空间内最大中子恒星的中央密度的光速等于光的变化,绝对最大的中子恒星被发现大致独立于2.40米eoss使用。这种限制性质量与最近分析的结果和数值通用相对性模拟的结果一致,关于在GW170817立即产生的可能超大规模剩余的最大质量的最大质量。可变形性

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