论文标题

来自窄线Seyfert 1星系的光学瞬变家族树

A Family Tree of Optical Transients from Narrow-Line Seyfert 1 Galaxies

论文作者

Frederick, Sara, Gezari, Suvi, Graham, Matthew J., Sollerman, Jesper, van Velzen, Sjoert, Perley, Daniel A., Stern, Daniel, Ward, Charlotte, Hammerstein, Erica, Hung, Tiara, Yan, Lin, Andreoni, Igor, Bellm, Eric C., Duev, Dmitry A., Kowalski, Marek, Mahabal, Ashish A., Masci, Frank J., Medford, Michael, Rusholme, Ben, Walters, Richard

论文摘要

Zwicky瞬态设施(ZTF)发现了五个新事件,这些事件属于新兴类的AGN,经历了具有较大振幅和快速上升时间的光滑耀斑。该样品由几种瞬态组成,这些瞬态最初被分类为具有狭窄光谱线的超新星。但是,经过仔细检查,所有宿主星系都显示出狭窄的Seyfert 1(NLSY1)星系的分辨率的Balmer线。瞬态事件长期存在,平均超过400天。我们报告了耀斑的紫外线和X射线随访,并观察到持续的紫外线发射,并用发光X射线发射检测到五个瞬态中的两个,排除了超新星解释。我们将该样品的特性与先前报道的燃烧的NLSY1星系进行了比较,并发现它们属于三个光谱类别:具有1)Balmer线轮廓和Fe II配合物的瞬态,NLSY1S的典型型,2)强烈的He II曲线和3)He II II轮廓,包括Bowen荧光特征。后者是归因于Trakhtenbrot等人报道的增强的AGN耀斑类别的成员。 (2019)。我们考虑在文献相关瞬态的背景下进行物理解释。例如,两个来源在光学中显示出很高的振幅重新构成,排除了这些瞬变的简单潮汐破坏事件方案。我们得出的结论是,三个样本属于Trakhtenbrot等。 (2019)班级,两个是NLSY1的TDE。我们还旨在了解为什么NLSY1优先是这种快速增强的燃烧活性的地点。

The Zwicky Transient Facility (ZTF) has discovered five new events belonging to an emerging class of AGN undergoing smooth flares with large amplitudes and rapid rise times. This sample consists of several transients that were initially classified as supernovae with narrow spectral lines. However, upon closer inspection, all of the host galaxies display resolved Balmer lines characteristic of a narrow-line Seyfert 1 (NLSy1) galaxy. The transient events are long-lived, over 400 days on average. We report UV and X-ray follow-up of the flares and observe persistent UV-bright emission, with two of the five transients detected with luminous X-ray emission, ruling out a supernova interpretation. We compare the properties of this sample to previously reported flaring NLSy1 galaxies, and find that they fall into three spectroscopic categories: Transients with 1) Balmer line profiles and Fe II complexes typical of NLSy1s, 2) strong He II profiles, and 3) He II profiles including Bowen fluorescence features. The latter are members of the growing class of AGN flares attributed to enhanced accretion reported by Trakhtenbrot et al. (2019). We consider physical interpretations in the context of related transients from the literature. For example, two of the sources show high amplitude rebrightening in the optical, ruling out a simple tidal disruption event scenario for those transients. We conclude that three of the sample belong to the Trakhtenbrot et al. (2019) class, and two are TDEs in NLSy1s. We also aim to understand why NLSy1s are preferentially the sites of such rapid enhanced flaring activity.

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