论文标题

最后一个季节重新构想:ZTF-I调查中的30个潮汐破坏事件

The Final Season Reimagined: 30 Tidal Disruption Events from the ZTF-I Survey

论文作者

Hammerstein, Erica, van Velzen, Sjoert, Gezari, Suvi, Cenko, S. Bradley, Yao, Yuhan, Ward, Charlotte, Frederick, Sara, Villanueva, Natalia, Somalwar, Jean J., Graham, Matthew J., Kulkarni, Shrinivas R., Stern, Daniel, Andreoni, Igor, Bellm, Eric C., Dekany, Richard, Dhawan, Suhail, Drake, Andrew J., Fremling, Christoffer, Gatkine, Pradip, Groom, Steven L., Ho, Anna Y. Q., Kasliwal, Mansi M., Karambelkar, Viraj, Kool, Erik C., Masci, Frank J., Medford, Michael S., Perley, Daniel A., Purdum, Josiah, van Roestel, Jan, Sharma, Yashvi, Sollerman, Jesper, Taggart, Kirsty, Yan, Lin

论文摘要

潮汐破坏事件(TDES)提供了一种研究休眠黑洞的独特方法。尽管在过去的几十年中,观察到的TDE的数量越来越大,但有关观察到的光学,紫外线和X射线发射的性质的问题仍然存在。我们提出了从Zwicky瞬态I阶段I期调查操作中均匀选择的30个光谱分类的TDE,并具有后续\ TextIt {swift {swift} UV和X射线观测值。通过研究光曲线特性之间的相关性,我们恢复了峰值光度光度和衰减时间尺度之间的浅阳性相关性。我们介绍了一种新的TDE,TDE-Featureless的新光谱类别,其特征是无特征光谱。新的TDE-Featurnever类显示较大的峰值隆重光度,峰值黑体温度和峰值黑体半径。我们检查了该样品中TDE的X射线明亮和X射线微弱种群之间的差异,发现X射线明亮的TDE显示出比X射线微弱子样本更高的黑体峰值光度。该光学选择的TDE的样本是迄今为止单个调查中最大的TDE样本,并且该样本的系统发现,分类和随访允许对TDE属性的鲁棒性表征,这是一个重要的垫脚石,可以朝向鲁宾时代。

Tidal disruption events (TDEs) offer a unique way to study dormant black holes. While the number of observed TDEs has grown thanks to the emergence of wide-field surveys in the past few decades, questions regarding the nature of the observed optical, UV, and X-ray emission remain. We present a uniformly selected sample of 30 spectroscopically classified TDEs from the Zwicky Transient Facility Phase I survey operations with follow-up \textit{Swift} UV and X-ray observations. Through our investigation into correlations between light curve properties, we recover a shallow positive correlation between the peak bolometric luminosity and decay timescales. We introduce a new spectroscopic class of TDE, TDE-featureless, which are characterized by featureless optical spectra. The new TDE-featureless class shows larger peak bolometric luminosities, peak blackbody temperatures, and peak blackbody radii. We examine the differences between the X-ray bright and X-ray faint populations of TDEs in this sample, finding that X-ray bright TDEs show higher peak blackbody luminosities than the X-ray faint sub-sample. This sample of optically selected TDEs is the largest sample of TDEs from a single survey yet, and the systematic discovery, classification, and follow-up of this sample allows for robust characterization of TDE properties, an important stepping stone looking forward toward the Rubin era.

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