论文标题
磁场诱导的杂化恒星变形
Magnetic-Field Induced Deformation in Hybrid Stars
论文作者
论文摘要
首次详细研究了强磁场对预计将在大型中子星体内部进行的脱浓相跃迁的影响。对于HADRONIC MATEAL,采用了非常一般的密度依赖性相对论平均场(DD-RMF)模型,而简单但有效的矢量增强袋模型(VBAG)模型用于研究Quark Matter。磁场效应被纳入状态的物质方程式和一般层次解决方案,这也满足了麦克斯韦方程。我们发现,对于使用球形对称的Tolman-Oppenheeimer-Volkoff(TOV)方程和通过Lorene库获得的轴对称性,对于恒星获得了巨大的磁性偶极矩,最大质量,规范质量半径和无量纲潮汐变形性。偏差取决于状态方程的刚度和被分析的恒星质量。这表明,与先前在文献中假设的磁场阈值不同,各向同性恒星的磁场阈值和TOV方程的可接受使用取决于物质组成和相互作用。
The effects of strong magnetic fields on the deconfinement phase transition expected to take place in the interior of massive neutron stars are studied in detail for the first time. For hadronic matter, the very general density-dependent relativistic mean-field (DD-RMF) model is employed, while the simple, but effective vector-enhanced bag model (vBag) model is used to study quark matter. Magnetic-field effects are incorporated into the matter equation of state and in the general-relativity solutions, which also satisfy Maxwell's equations. We find that for large values of magnetic dipole moment, the maximum mass, canonical mass radius, and dimensionless tidal deformability obtained for stars using spherically symmetric Tolman-Oppenheimer-Volkoff (TOV) equations and axisymmetric solutions attained through the LORENE library differ considerably. The deviations depend on the stiffness of the equation of state and on the star mass being analyzed. This points to the fact that, unlike what was assumed previously in the literature, magnetic field thresholds for the approximation of isotropic stars and the acceptable use of TOV equations depend on the matter composition and interactions.