论文标题
来自恒星质量黑洞潮汐破坏事件的快速光学瞬态
Fast Optical Transients from Stellar-Mass Black Hole Tidal Disruption Events in Young Star Clusters
论文作者
论文摘要
观察性证据表明,大多数恒星可能出生在出色的群集或关联中。在这些密集的环境中,动态相互作用导致近距离相遇的速度很高。最近的各种观察和理论指示表明,可能存在恒星质量的黑洞,并在所有质量的恒星簇中起积极的动态作用。在这项研究中,我们通过年轻恒星簇中的恒星质量黑洞探索了主序列的潮汐破坏。我们计算了一套超过3000个独立$ n $体体模拟的套件,这些模拟涵盖了集群质量,金属性和半质量半径的范围。我们发现,恒星质量的黑洞潮汐破坏事件(TDE)的总速度约为$ 200 \,\ rm {gpc}^{ - 3} { - 3} \,\ rm {yr}^{ - 1} $在本地宇宙中的年轻恒星群中。这些TDE有望具有几个特征,即每天订购的快速上升时间,X射线亮度至少为$ 10^{44} \,\ rm {erg {erg \,s}^{ - 1} $,以及明亮的光学亮度$ 10^{41} -10^{44} \,\ rm {erg \,s}^{ - 1} $)与磁盘风重新处理有关。特别是,我们显示这些事件与新兴类别的快速蓝色光学瞬变具有许多共同点。
Observational evidence suggests that the majority of stars may have been born in stellar clusters or associations. Within these dense environments, dynamical interactions lead to high rates of close stellar encounters. A variety of recent observational and theoretical indications suggest stellar-mass black holes may be present and play an active dynamical role in stellar clusters of all masses. In this study, we explore the tidal disruption of main sequence stars by stellar-mass black holes in young star clusters. We compute a suite of over 3000 independent $N$-body simulations that cover a range in cluster mass, metallicity, and half-mass radii. We find stellar-mass black hole tidal disruption events (TDEs) occur at an overall rate of up to roughly $200\,\rm{Gpc}^{-3}\,\rm{yr}^{-1}$ in young stellar clusters in the local universe. These TDEs are expected to have several characteristic features, namely fast rise times of order a day, peak X-ray luminosities of at least $10^{44}\,\rm{erg\,s}^{-1}$, and bright optical luminosities (roughly $10^{41}-10^{44}\,\rm{erg\,s}^{-1}$) associated with reprocessing by a disk wind. In particular, we show these events share many features in common with the emerging class of Fast Blue Optical Transients.