论文标题
在NGC 3227 III中捕获的瞬态遮挡事件。 2019年X射线遮挡事件的光电离建模
Transient obscuration event captured in NGC 3227 III. Photoionization modeling of the X-ray obscuration event in 2019
论文作者
论文摘要
I型AGN中越来越多的瞬态X射线遮挡事件表明,我们对中央发动机的视线并不总是免费的。从2000年到2016年,附近的Seyfert 1.5 Galaxy NGC 3227报道了多次X射线模糊事件。在2019年底,Swift确定了另一场X射线晦涩的事件。与XMM-Newton,Nustar和HST/COS进行了两个协调的目标观测,并于2019年11月和12月触发了这一晦涩的事件。对于每个观察结果,我们分析了时间平均的X射线光谱。我们使用SPEX代码执行光电离模型,这使我们能够通过各种光电离吸收和发射成分同时约束内在的连续体。与NGC 3227中以前的瞬态X射线晦涩的事件类似,2019年底捕获的X射线事件是短暂的(不到五个月)。如果遮盖物只有一个光电离的组件,则2019年底的两个X射线观测无法通过对不同电离连续体做出反应的镜子来解释。由于隔离器的几何形状未知,因此其数量密度和与黑洞的距离不能受到很好的约束。从BLR到尘土飞扬的圆环,推断的距离至少覆盖了两个数量级。与NGC 5548和NGC 3783等Seyfert星系中的其他X射线遮挡事件不同,与档案UV光谱相比,2019年NGC 3227的HST/COS Spestra中没有发现明显的蓝光宽宽吸收槽。如果X射线模糊不清的人没有将我们的视线拦截到紫外线发射区域(很大一部分),则可以解释这一点。了解到目前为止观察到的X射线遮挡事件中观察性差异的多样性并不直接。需要具有高质量数据的未来观察,以揭示X射线遮挡事件的性质。 [Arxiv的短端]
A growing number of transient X-ray obscuration events in type I AGN suggest that our line-of-sight to the central engine is not always free. Multiple X-ray obscuration events have been reported in the nearby Seyfert 1.5 galaxy NGC 3227 from 2000 to 2016. In late 2019, another X-ray obscuration event was identified with Swift. Two coordinated target-of-opportunity observations with XMM-Newton, NuSTAR, and HST/COS were triggered in Nov. and Dec. 2019 to study this obscuration event. For each observation, we analyze the time-averaged X-ray spectra. We perform photoionization modeling with the SPEX code, which allows us to constrain the intrinsic continuum simultaneously with various photoionized absorption and emission components. Similar to previous transient X-ray obscuration events in NGC 3227, the one caught in late 2019 is short-lived (less than five months). If the obscurer has only one photoionized component, the two X-ray observations in late 2019 cannot be explained by the same obscurer that responds to the varying ionizing continuum. Due to the unknown geometry of the obscurer, its number density and distance to the black hole cannot be well constrained. The inferred distance covers at least two orders of magnitude, from the BLR to the dusty torus. Unlike some other X-ray obscuration events in Seyfert galaxies like NGC 5548 and NGC 3783, no prominent blueshifted broad absorption troughs were found in the 2019 HST/COS spectra of NGC 3227 when compared with archival UV spectra. This might be explained if the X-ray obscurer does not intercept our line of sight to (a significant portion of) the UV emitting region. It is not straightforward to understand the variety of the observational differences in the X-ray obscuration events observed so far. Future observations with high-quality data are needed to unveil the nature of the X-ray obscuration events. [shortend for arXiv]