论文标题
核面食在热和密集的物质中及其对天体物理模拟状态方程的影响
Nuclear pasta in hot and dense matter and its influence on the equation of state for astrophysical simulations
论文作者
论文摘要
我们探讨了超新星物质中出现的核面食的特性,即在有限温度下具有固定质子馏分的物质。使用可压缩的液滴(CLD)模型研究了带有一系列几何形状的意大利面相,其中核物质分为核子的致密液相,核子的稀释气相和$α$颗粒的稀释气相。两个共存阶段的平衡条件是通过最小化总自由能(包括表面和库仑贡献)来得出的,这与由于有限尺寸效应而导致的相位平衡条件明显不同。与仅考虑球形核的结果相比,面食相可以延迟到均匀物质的过渡并扩大相图中的非均匀物质区域。使用CLD模型在本计算中获得的热力学量与使用Thomas-Fermi近似的天体物理模拟的状态表中的现实表方程中的热力学量与那些相一致。发现各种面食形状的密度范围都取决于温度$ t $和质子分数$ y_p $。此外,核对称能及其密度依赖性可能在确定面食相的性质中起着至关重要的作用。我们的结果表明,面食相图最敏感地取决于对称能量斜率$ l $,尤其是在低$ y_p $和高$ t $区域中。
We explore the properties of nuclear pasta appearing in supernova matter, i.e., matter at finite temperature with a fixed proton fraction. The pasta phases with a series of geometric shapes are studied using the compressible liquid-drop (CLD) model, where nuclear matter separates into a dense liquid phase of nucleons and a dilute gas phase of nucleons and $α$ particles. The equilibrium conditions for two coexisting phases are derived by minimization of the total free energy including the surface and Coulomb contributions, which are clearly different from the Gibbs conditions for phase equilibrium due to the finite-size effects. Compared to the results considering only spherical nuclei, the inclusion of pasta phases can delay the transition to uniform matter and enlarge the region of nonuniform matter in the phase diagram. The thermodynamic quantities obtained in the present calculation with the CLD model are consistent with those in the realistic equation of state table for astrophysical simulations using the Thomas--Fermi approximation. It is found that the density ranges of various pasta shapes depend on both the temperature $T$ and the proton fraction $Y_p$. Furthermore, the nuclear symmetry energy and its density dependence may play crucial roles in determining the properties of pasta phases. Our results suggest that the pasta phase diagram is most sensitively dependent on the symmetry energy slope $L$ especially in the low-$Y_p$ and high-$T$ region.