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THE BROADBAND SPECTRAL VARIABILITY OF MCG–6-30-15 OBSERVED BY NUSTAR AND XMM-NEWTON

机译:NUSTAR和XMM-Newton观测到的MCG–6-30-15的宽带波段光谱变异性

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摘要

MCG–6-30-15, at a distance of 37 Mpc (z = 0.008), is the archetypical Seyfert 1 galaxy showing very broad Fe Kα emission. We present results from a joint NuSTAR and XMM-Newton observational campaign that, for the first time, allows a sensitive, time-resolved spectral analysis from 0.35?keV up to 80?keV. The strong variability of the source is best explained in terms of intrinsic X-ray flux variations and in the context of the light-bending model: the primary, variable emission is reprocessed by the accretion disk, which produces secondary, less variable, reflected emission. The broad Fe Kα profile is, as usual for this source, well explained by relativistic effects occurring in the innermost regions of the accretion disk around a rapidly rotating black hole. We also discuss the alternative model in which the broadening of the Fe Kα is due to the complex nature of the circumnuclear absorbing structure. Even if this model cannot be ruled out, it is disfavored on statistical grounds. We also detected an occultation event likely caused by broad-line region clouds crossing the line of sight.
机译:MCG–6-30-15,距离37 Mpc(z = 0.008),是典型的塞弗特1号星系,显示出非常广泛的FeKα发射。我们展示了NuSTAR和XMM-Newton联合观测活动的结果,该研究活动首次实现了从0.35?keV到80?keV的灵敏,时间分辨的光谱分析。最好根据内在X射线通量变化和光弯曲模型来说明光源的强烈可变性:主要的可变发射由吸积盘重新处理,从而产生次要的,可变性较小的反射发射。像通常对此来源一样,宽泛的FeKα分布可以很好地解释为在相对快速旋转的黑洞周围的吸积盘最内层区域发生相对论效应。我们还讨论了替代模型,其中FeKα的增宽是由于周核吸收结构的复杂性质所致。即使不能排除该模型,但从统计角度来看也是不利的。我们还发现了可能是由宽视线区域云穿越视线引起的掩星事件。
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