论文标题
光学 - 脱离潮汐破坏事件
Optical-Ultraviolet Tidal Disruption Events
论文作者
论文摘要
光学 - 耗分型潮汐破坏事件(TDE)的存在可能令人惊讶,因为它们的电磁输出最初被预测由积聚磁盘中的X射线发射主导。然而,在过去的十年中,光学瞬态调查的增长导致鉴定了仅在银河系中心发生的新的光学瞬变,其中许多被认为是TDE。在这里,我们回顾了这些事件的观察到的特性,这些属性是根据共享的一组光度和光谱特性确定的。我们对33个来源进行了同质分析,我们将其归类为强大的TDE,并将其分为类别。此处用于对TDE进行分类的标准可能会在收集新样本并揭示了TDE的潜在额外多样性之后进行更新。我们还总结了光学 - 硫酸群TDE速率以及质量函数和发光函数的当前测量值。有关当前事件样本的许多开放问题。我们预计,寻找答案将在各个领域(从积聚物理学到星系进化)中解锁新见解。
The existence of optical-ultraviolet Tidal Disruption Events (TDEs) could be considered surprising because their electromagnetic output was originally predicted to be dominated by X-ray emission from an accretion disk. Yet over the last decade, the growth of optical transient surveys has led to the identification of a new class of optical transients occurring exclusively in galaxy centers, many of which are considered to be TDEs. Here we review the observed properties of these events, identified based on a shared set of both photometric and spectroscopic properties. We present a homogeneous analysis of 33 sources that we classify as robust TDEs, and which we divide into classes. The criteria used here to classify TDEs will possibly get updated as new samples are collected and potential additional diversity of TDEs is revealed. We also summarize current measurements of the optical-ultraviolet TDE rate, as well as the mass function and luminosity function. Many open questions exist regarding the current sample of events. We anticipate that the search for answers will unlock new insights in a variety of fields, from accretion physics to galaxy evolution.