论文标题

比较NLS1 AGN UGC 11763中软X射线变异性的反射和吸收模型

Comparing Reflection and Absorption Models for the Soft X-ray Variability in the NLS1 AGN UGC 11763

论文作者

Jiang, Jiachen, Gallo, Luigi C., Grupe, Dirk, Parker, Michael L.

论文摘要

我们对窄线seyfert 1 Galaxy UGC 11763的两个XMM-Newton观测值进行了光谱分析。UGC 11763在两个观测值中显示出非常不同的软X射线光谱形状,相距12年。考虑了三种光谱模型来解释UGC 11763的多上述X射线变异性,一种基于相对论盘反射模型,一个基于多个部分覆盖的吸收器与温暖的Corona模型相结合,以及一个混合模型。在第一个模型中,UGC 11763的X射线变异性是由尺寸可变的紧凑型冠状区域发射引起的。所得的光盘反射组件相应地变化。在此模型中,也需要具有适度柱密度的温暖吸收模型。在部分覆盖的吸收方案中,UGC 11763的X射线变异性是由位于$ r <\ of100r _ {\ rm g} $区域内的两个吸收剂的可变覆盖因子引起的。此外,温暖的电晕的温度和强度也必须显着改变,以解释可变的软X射线发射。最后,我们研究了热电怪结合使用UGC 11763中可变的固有幂律发射的可能性,而无需在第三个模型中改变电晕的几何形状。该混合模型比部分覆盖的吸收模型提供了拟合铁发射带的改进的拟合度稍好一些。当前的CCD分辨率数据无法区分UGC 11763的这些光谱模型。未来的高分辨率X射线任务,例如雅典娜和Xrism将通过解决不同的光谱成分来测试它们。

We present a spectral analysis of two XMM-Newton observations of the narrow-line Seyfert 1 galaxy UGC 11763. UGC 11763 shows very different soft X-ray spectral shapes in the two observations separated by 12 years. Three spectral models are considered to explain the multi-epoch X-ray variability of UGC 11763, one based on the relativistic disc reflection model, one based on multiple partially-covering absorbers combined with the warm corona model, and a hybrid model. In the first model, the X-ray variability of UGC 11763 is caused by the emission from a compact coronal region with a variable size. The resulting disc reflection component changes accordingly. A warm absorption model with a modest column density is required in this model too. In the partially-covering absorption scenario, the X-ray variability of UGC 11763 is caused by the variable covering factors of two absorbers located within a region of $r<\approx100r_{\rm g}$. Moreover, the temperature and strength of the warm corona have to change significantly too to explain the variable underlying soft X-ray emission. Lastly, we investigate the possibility of variable intrinsic power-law emission from the hot corona combined with variable absorption in UGC 11763 without changing the geometry of the corona in the third model. This hybrid model provides a slightly better fit than the partially-covering absorption model with improvements in fitting the iron emission band. Current CCD-resolution data cannot distinguish these spectral models for UGC 11763. Future high-resolution X-ray missions, e.g. Athena and XRISM, will test them by resolving different spectral components.

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