论文标题

模棱两可的核瞬变AT2019PEV的X射线视图

An X-ray View of the Ambiguous Nuclear Transient AT2019pev

论文作者

Yu, Zhefu, Kochanek, C. S., Mathur, S., Auchettl, K., Grupe, D., Holoien, T. W. -S.

论文摘要

AT2019PEV是狭窄的Seyfert 1 Galaxy中的核瞬变,$ z = 0.096 $。档案紫外线,光学和红外数据显示了潮汐破坏事件(TDE)和主动银河核(AGN)的特征,并且其性质尚不完全了解。自从第一个Swift XRT时代以来,我们介绍了AT2019PEV的详细X射线观测,其演变为173天。 X射线光度从第一个Swift XRT时期到Lightcurve Peak在五天内增加了五倍。 Lightcurve衰减了10倍超过$ \ sim $ 75天,然后在较晚的重新夸张趋势下变平。 X射线光谱在峰值之前显示出“较难的当时”趋势,而高峰后的“较难的当时”趋势可能表明增生状态的过渡。基于档案地面的光学观察结果显示出与X射线灯曲面相似的时间演化。除了地面观测的季节性极限之外,盖亚灯曲线正朝着光学发现后223天朝着同样明亮或更明亮的峰值上升。 AT2019PEV结合了我们的X射线分析和档案多波长数据,更类似于AGN瞬态。

AT2019pev is a nuclear transient in a narrow-line Seyfert 1 galaxy at $z=0.096$. The archival ultraviolet, optical and infrared data showed features of both tidal disruption events (TDEs) and active galactic nuclei (AGNs), and its nature is not fully understood. We present detailed X-ray observations of AT2019pev taken with Swift, Chandra and NICER over 173 days of its evolution since the first Swift XRT epoch. The X-ray luminosity increases by a factor of five in five days from the first Swift XRT epoch to the lightcurve peak. The lightcurve decays by a factor of ten over $\sim$75 days and then flattens with a weak re-brightening trend at late times. The X-ray spectra show a "harder-when-brighter" trend before peak and a "harder-when-fainter" trend after peak, which may indicate a transition of accretion states. The archival ground-based optical observations show similar time evolution as the X-ray lightcurves. Beyond the seasonal limit of the ground-based observations, the Gaia lightcurve is rising toward an equally bright or brighter peak 223 days after the optical discovery. Combining our X-ray analysis and archival multi-wavelength data, AT2019pev more closely resembles an AGN transient.

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