论文标题
重型离子碰撞中中核内核子相互作用的密度依赖性方案的影响
Effects of density-dependent scenarios of in-medium nucleon-nucleon interactions in heavy-ion collisions
论文作者
论文摘要
使用更合理的独立密度依赖性方案,而不是中等密度依赖的场景,用于中等$ nn $,$ pp $和$ np $相互作用,我们研究了核中核中核中核中核中核中核内核中差异差异的影响,在两个密度依赖性方案中对isospin sentersepterment colivision in Central $ colliviss $ collivision $^197} $^197} $^197} MEV/核子。 Moreover, to more physically detect the differences between the nucleon-nucleon interactions in two density-dependent scenarios, we also map the nucleon-nucleon interaction in the separate density-dependent scenario into that in the total density-dependent scenario through fitting the identical constraints for symmetric nuclear matter as well as the identical slope parameter of nuclear symmetry energy at the saturation density.结果表明,两个密度依赖性的情景也导致基本不同的对称势,尤其是在高密度下,尽管它们可以导致对称核物质的状态相同的状态方程,以及同义异,异,对称性不对称核物质的相同对称能。因此,这些同胞敏感的可观察物也受到核定内核中核内相互作用的不同密度依赖性方案的明显影响。因此,根据这些发现,建议在重型离子碰撞中使用这些同胞敏感的可观察物探测高密度的对称能量时,应考虑到中核内核子内相互作用的单独密度依赖性方案的影响。
Using a more reasonable separate density-dependent scenario instead of the total density-dependent scenario for in-medium $nn$, $pp$ and $np$ interactions, we examine effects of differences of in-medium nucleon-nucleon interactions in two density-dependent scenarios on isospin-sensitive observables in central $^{197}$Au+$^{197}$Au collisions at 400 MeV/nucleon. Moreover, to more physically detect the differences between the nucleon-nucleon interactions in two density-dependent scenarios, we also map the nucleon-nucleon interaction in the separate density-dependent scenario into that in the total density-dependent scenario through fitting the identical constraints for symmetric nuclear matter as well as the identical slope parameter of nuclear symmetry energy at the saturation density. It is shown that two density-dependent scenarios also lead to essentially different symmetry potentials especially at high densities although they can lead to the identical equation of state for the symmetry nuclear matter as well as the identical symmetry energy for the isospin asymmetric nuclear matter. Consequently, these isospin-sensitive observables are also appreciably affected by the different density-dependent scenarios of in-medium nucleon-nucleon interactions. Therefore, according to these findings, it is suggested that effects of the separate density-dependent scenario of in-medium nucleon-nucleon interactions should be taken into account when probing the high-density symmetry energy using these isospin-sensitive observables in heavy-ion collisions.