论文标题
量化磁场对热中子星体内皮的影响
Effect of quantizing magnetic field on the inner crusts of hot Neutron Stars
论文作者
论文摘要
在目前的工作中,我们研究了强烈量化磁场和有限温度对热中子恒星内皮性能的影响。中子恒星的内皮包含富含中子的核,该核排列在晶格中,并嵌入自由中子和电子的气体中。我们描述了Wigner-Seitz(WS)细胞近似中的系统。使用具有SKM*相互作用的Skyrme模型计算核能。为了隔离核的特性,我们遵循Bonche,Levit和Vautherin提出的减法程序,在Thomas-Fermi近似中。我们通过最大程度地减少满足电荷中性的WS细胞的自由能以及$β-$平衡条件的自由能,从而获得内皮的平衡性能。我们推断在固定的重子密度和温度下,强量化磁场可减少细胞半径,中子和质子数量与无场无病例相比。但是,在存在磁场的情况下,细胞核中的核数增加了。每个核子的自由能也降低了磁性内皮。另一方面,我们发现有限温度倾向于抹掉磁场的影响。在二进制中子星合并中$ r- $过程核合成的背景下,我们的结果可能很重要。
In the present work we study the effects of strongly quantizing magnetic fields and finite temperature on the properties of inner crusts of hot neutron stars. The inner crust of a neutron star contains neutron-rich nuclei arranged in a lattice and embedded in gases of free neutrons and electrons. We describe the system within the Wigner-Seitz (WS) cell approximation. The nuclear energy is calculated using Skyrme model with SkM* interaction. To isolate the properties of nuclei we follow the subtraction procedure presented by Bonche, Levit and Vautherin, within the Thomas-Fermi approximation. We obtain the equilibrium properties of inner crust for various density, temperatures and magnetic fields by minimizing the free energy of the WS cell satisfying the charge neutrality and $β-$equilibrium conditions. We infer that at a fixed baryon density and temperature, strong quantizing magnetic field reduces the cell radii, neutron and proton numbers in the cell compared with the field free case. However, the nucleon number in the nucleus increases in presence of magnetic field. The free energy per nucleon also decreases in magnetized inner crust. On the other hand, we find that finite temperature tends to smear out the effects of magnetic field. Our results can be important in the context of $r-$process nucleosynthesis in the binary neutron star mergers.