论文标题
磁化中子星的外层中的三维传热效应
Three-dimensional heat transfer effects in external layers of a magnetized neutron star
论文作者
论文摘要
确定中子恒星(NS)表面上的磁场结构是现代天体物理学的重要问题。在存在强磁场的情况下,变性物质的热导率是各向异性的。在本文中,我们在磁化NS的外层中介绍3D各向异性传热模拟,并构造合成热曲线。我们使用了与以前的工作张力直导系数不同的电子电导率系数,这些电导率系数是由Chapman-Enskog方法源自Boltzmann方程的分析解。在存在偶极子 - 四极杆磁场的情况下,我们获得了NS表面温度分布。我们考虑了一种情况,其中磁场的偶极子和四极组件的磁轴未对齐。为了检查此类磁场的观察表现,我们使用复合黑体模型为获得的温度分布生成了热光曲线。结果表明,最简单的(在四极组件中仅零级球形函数)非又偶联的偶极 - 甲状腺磁场磁场分布可以显着影响热光曲线,从而使脉冲曲线与与纯孔场相比,使脉冲曲线非对称和扩增脉冲。
Determination of a magnetic field structure on a neutron star (NS) surface is an important problem of a modern astrophysics. In a presence of strong magnetic fields a thermal conductivity of a degenerate matter is anisotropic. In this paper we present 3D anisotropic heat transfer simulations in outer layers of magnetized NSs, and construct synthetic thermal light curves. We have used a different from previous works tensorial thermal conductivity coefficient of electrons, derived from the analytical solution of the Boltzmann equation by the Chapman-Enskog method. We have obtained a NS surface temperature distribution in presence of dipole-plus-quadrupole magnetic fields. We consider a case, in which magnetic axes of a dipole and quadrupole components of the magnetic field are not aligned. To examine observational manifestations of such fields we have generated thermal light curves for the obtained temperature distributions using a composite black-body model. It is shown, that the simplest (only zero-order spherical function in quadrupole component) non-coaxial dipole-plus-quadrupole magnetic field distribution can significantly affect the thermal light curves, making pulse profiles non-symmetric and amplifying pulsations in comparison to the pure-dipolar field.