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Swift-XRT six-year monitoring of the ultraluminous X-ray source M33 X-8

机译:Swift-XRT对超发光X射线源M33 X-8的六年监视

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Context. The long-term evolution of ultraluminous X-ray sources (ULX) with their spectral and luminosity variations in time give important clues on the nature of ULX and on the accretion process that powers them. Aims. We report here the results of a Swift-XRT six-year monitoring campaign of the closest example of a persistent ULX, M33 X-8, that extends the monitoring of this source in the soft X-rays to 16 years. The luminosity of this source is a few 1039 erg s-1, marking the faint end of the ULX luminosity function. Methods. We analyzed the set of 15 observations collected during the Swift monitoring. We searched for differences in the spectral parameters at different observing epochs, adopting several models commonly used to fit the X-ray spectra of ULX. Results. The source exhibits flux variations of about 30%. No significant spectral variations are observed during the monitoring. The average 0.5?10 keV spectrum can be well described by a thermal model, either in the form of a slim disk, or as a combination of a Comptonized corona and a standard accretion disk.
机译:上下文。超发光X射线源(ULX)的长期发展及其光谱和发光度随时间的变化,为ULX的性质以及为它们供电的积聚过程提供了重要线索。目的我们在此报告Swift-XRT六年监视活动的结果,该活动是持久性ULX的最接近示例M33 X-8,它将对软X射线源的监视延长到16年。该光源的发光度约为1039 erg s-1,标志着ULX发光度功能的微弱终点。方法。我们分析了在Swift监视期间收集的15个观测值。我们采用几种通常用于拟合ULX的X射线光谱的模型,搜索了在不同观测时期光谱参数的差异。结果。该源的通量变化约为30%。在监视过程中没有观察到明显的光谱变化。平均0.5?10 keV光谱可以通过热模型很好地描述,可以是薄盘形式,也可以是康普顿电晕和标准吸积盘的组合。

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