论文标题

高质量X射线二进制脉冲曲线的常见模式

Common patterns in pulse profiles of High Mass X-ray Binaries

论文作者

Alonso-Hernandez, Jaime, Fuerst, Felix, Kretschmar, Peter, Caballero, Isabel, Joyce, Amy

论文摘要

X射线脉冲星的脉动带有有关积聚和磁场几何形状的信息。在这里,我们介绍了X射线脉冲星样品的能量分辨脉冲谱的研究和分类,重点是高质量X射线二进制文件。我们的目标是根据观察到的脉冲曲线对X射线脉冲星进行分类,并寻找此分类与其原理物理可观察物之间的相关性。分析管道可在线提供。我们使用用XMM-Newton和Nustar获得的数据分析了X射线脉冲星样品的脉冲曲线。我们使用最多五个谐波的傅立叶系列符合能量解析的脉冲曲线。我们研究了脉冲曲线特性与系统的其他可观察到的关系(例如轨道周期,磁场强度和光度),以研究这些系统的极端物理。通过基于形状,拟合傅立叶谐波的主导地位以及它们各自的能量演化的统治地位,将源分为三组。我们找不到系统的脉冲轮廓形状或组和其他参数之间的结论性相关性。但是,将我们的分类与源轨道周期图中的源位置进行比较时发现了较弱的趋势。需要进一步的研究以确认这一趋势。尽管X射线脉冲星有各种各样的脉冲曲线,但我们发现,随着方法,我们将出现清晰的类别,我们将其用于将其行为分类为能量的功能。由于我们没有发现分类方案与其他参数之间的明确关系,因此得出结论,X射线脉冲曲线受其他隐藏变量的影响。

The pulsations of X-ray pulsars carry information about the accretion and magnetic field geometry. Here we present a study and classification of energy resolved pulse profiles of a sample of X-ray pulsars, focusing on high-mass X-ray binaries. Our goal is to perform a classification of X-ray pulsars based on their observed pulse profiles and look for correlations between this classification and their principle physical observables. The analysis pipeline is available online. We analysed the pulse profiles of a sample of X-ray pulsars using data obtained with the XMM-Newton and NuSTAR. We fit the energy resolved pulse profiles with a Fourier series of up to five harmonics. We investigate relationships between the pulse profile properties and other observables of the systems (e.g., orbital period, magnetic field strength, and luminosity) to study the extreme physics of these systems. The sources were divided into three groups by a classification based on the shape, the dominance of the fitted Fourier harmonics and their respective evolution with energy. We do not find a conclusive correlation between the pulse profile shapes or groups and other parameters of the systems. However, a weak trend was found when comparing our classification to the sources' location in the spin period-orbital period diagram. Further studies are required to confirm this trend. Despite the large variety of pulse profiles of the X-ray pulsars, we found that with our approach clear categories emerge which we use to classify their behavior as function of energy. As we do not find a clear relationship between our classification scheme and other parameters we conclude that X-ray pulse profiles are influenced by other hidden variables.

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