论文标题
快速旋转中子星的表面:与中子恒星参数估计的影响
The surface of rapidly-rotating neutron stars: implications to neutron star parameter estimation
论文作者
论文摘要
中子恒星内部组成探索器(NICE)当前正在观察旋转中子星表面上的热点发出的X射线脉冲图谱,从而可以以前所未有的精度推断其半径。脉冲曲线模型中的关键成分是恒星扁平形状的分析公式。这些公式需要在大型的中子星溶液中拟合,该溶液涵盖了各种状态,出色的紧凑型和旋转频率。但是,此过程引入了系统误差的源头,因为(i)拟合并不能完美地描述合奏中所有恒星的表面,并且(ii)中子恒星由单个状态方程描述,其对表面形状的影响在拟合过程中平均。在这里,我们对此系统错误进行了第一个研究,发现证据表明它相对于较好的半径推断中的统计误差是亚抑制剂。我们还发现证据表明,当前使用的公式可以用于迅速旋转恒星半径的推断,该公式在公式的有效性域之外。此外,我们采用一种准确的基于焓的方法来定位快速旋转中子星的数值解和新的高度准确公式来描述其表面的表面。这些结果可以用于需要准确描述快速旋转中子星的壁面表面的应用。
The Neutron star Interior Composition Explorer (NICER) is currently observing the x-ray pulse profiles emitted by hot spots on the surface of rotating neutron stars allowing for an inference of their radii with unprecedented precision. A critical ingredient in the pulse profile model is an analytical formula for the oblate shape of the star. These formulas require a fitting over a large ensemble of neutron star solutions, which cover a wide set of equations of state, stellar compactnesses and rotational frequencies. However, this procedure introduces a source of systematic error, as (i) the fits do not describe perfectly the surface of all stars in the ensemble and (ii) neutron stars are described by a single equation of state, whose influence on the surface shape is averaged out during the fitting procedure. Here we perform a first study of this systematic error, finding evidence that it is subdominant relative to the statistical error in the radius inference by NICER. We also find evidence that the formula currently used by NICER can be used in the inference of the radii of rapidly rotating stars, outside of the formula's domain of validity. Moreover, we employ an accurate enthalpy-based method to locate the surface of numerical solutions of rapidly rotating neutron stars and a new highly accurate formula to describe their surfaces. These results can be used in applications that require an accurate description of oblate surfaces of rapidly rotating neutron stars.