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Equation of state of isospin-asymmetric nuclear matter in relativistic mean-field models with chiral limits

机译:具有手性极限的相对论平均场模型中等旋不对称核物质的状态方程

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Using in-medium hadron properties according to the Brown-Rho scaling due to the chiral symmetry restoration at high densities and considering naturalness of the coupling constants, we have newly constructed several relativistic mean-field Lagrangians with chiral limits. The model parameters are adjusted such that the symmetric part of the resulting equation of state at supra-normal densities is consistent with that required by the collective flow data from high energy heavy-ion reactions, while the resulting density dependence of the symmetry energy at sub-saturation densities agrees with that extracted from the recent isospin diffusion data from intermediate energy heavy-ion reactions. The resulting equations of state have the special feature of being soft at intermediate densities but stiff at high densities naturally. With these constrained equations of state, it is found that the radius of a 1.4M(circle dot) canonical neutron star is in the range of 11.9 km <= R <= 13.1 km, and the maximum neutron star mass is around 2.0M(circle dot) close to the recent observations. (c) 2007 Elsevier B.V All rights reserved.
机译:由于高密度的手性对称恢复,并根据布朗-Rho比例使用中等强子性质,并考虑了耦合常数的自然性,我们新构建了几个具有手性极限的相对论平均场拉格朗日方程。调整模型参数,以使超常密度状态下所得状态方程的对称部分与高能重离子反应的集体流动数据所需的一致,而子状态下对称能量的所得密度依赖性-饱和密度与从中间能重离子反应的最新同位旋扩散数据中提取的密度一致。所得的状态方程具有以下特征:在中等密度时较软,而在高密度时自然较硬。利用这些受约束的状态方程,发现一个1.4M(圆点)的规范中子星的半径在11.9 km <= R <= 13.1 km的范围内,最大中子星质量约为2.0M(圆点)接近最近的观察结果。 (c)2007 Elsevier B.V保留所有权利。

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