论文标题

测量潮汐破坏事件的黑洞质量并测试$ m _ {\ rm bh}-σ_*$关系

Measuring black hole masses from tidal disruption events and testing the $M_{\rm BH}-σ_*$ relation

论文作者

Zhou, Z. Q., Liu, F. K., Komossa, S., Cao, R., Ho, L. C., Chen, Xian, Li, Shuo

论文摘要

刘和合作者最近提出了一个用于潮汐破坏事件(TDES)的椭圆形磁盘模型。他们表明,光学/紫外线TDE的积聚磁盘是较大且高度偏心的,并建议具有复杂和多样化的宽光学发射线源于随机倾斜和取向的凉爽偏心积聚磁盘。在本文中,我们计算椭圆形磁盘的辐射效率,并研究对TDE的观察的影响。我们对18 TDE来源的峰值亮度后的峰值光度光度和总辐射能进行了编程,并将这些数据与椭圆形吸积盘模型的预测进行了比较。我们的结果表明,观察结果与理论预测一致,并且将恒星碎片的大部分轨道能被推入黑洞(BH)而不转化为辐射。此外,我们得出了破坏的恒星和TDE的BHS质量的质量。本文获得的BH质量也与$ m _ {\ rm bh} - σ_*$关系计算的BH质量一致。我们的结果提供了一种有效的方法,可以在正在进行的和下一代的天空调查中测量大量TDE的BHS质量,而不管BHS是否位于银河系核中心还是在磁盘和光晕中徘徊。

Liu and collaborators recently proposed an elliptical accretion disk model for tidal disruption events (TDEs). They showed that the accretion disks of optical/UV TDEs are large and highly eccentric and suggested that the broad optical emission lines with complex and diverse profiles originate in the cool eccentric accretion disk of random inclination and orientation. In this paper, we calculate the radiation efficiency of the elliptical accretion disk and investigate the implications for the observations of TDEs. We compile observational data for the peak bolometric luminosity and total radiation energy after peak brightness of 18 TDE sources and compare these data to the predictions from the elliptical accretion disk model. Our results show that the observations are consistent with the theoretical predictions and that the majority of the orbital energy of the stellar debris is advected into the black hole (BH) without being converted into radiation. Furthermore, we derive the masses of the disrupted stars and the masses of the BHs of the TDEs. The BH masses obtained in this paper are also consistent with those calculated with the $M_{\rm BH} - σ_*$ relation. Our results provide an effective method for measuring the masses of BHs in large numbers of TDEs to be discovered in ongoing and next-generation sky surveys, regardless of whether the BHs are located at the centers of galactic nuclei or wander in disks and halos.

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