论文标题

观察与理论的对抗:X射线二进制文件中的高频QPO,潮汐破坏事件和主动银河核

Confrontation of Observation and Theory: High Frequency QPOs in X-ray Binaries, Tidal Disruption Events, and Active Galactic Nuclei

论文作者

Smith, Krista Lynne, Tandon, Celia R., Wagoner, Robert V.

论文摘要

我们汇编了高频准周期振荡(QPOS),周围是恒星和超质量的黑洞,并比较它们在黑洞质量,自旋和振荡频率的参数空间中的位置。我们发现,超级质量黑洞占据了参数空间的单独区域,而进一步的QPO围绕潮汐破坏事件而不是Seyfert型AGN占据了完全不同的空间。然后,我们将这些结果与轨道共振,磁盘,扭曲的磁盘和磁盘喷射耦合的理论模型相结合。我们发现,尽管恒星质量黑洞周围的振荡通常与上述型号一致,但超级质量的黑洞绝对不是。在潮汐破坏事件中看到的振荡与在最内部稳定圆形轨道(ISCO)的频率附近的振荡一致,而AGN中的QPO并未考虑任何考虑的物理模型。这表明,尽管QPO频率和黑洞质量之间数十年宽的相关性所隐含的增生过程的规模不变性,但任何高频QPO的理论都必须将频率与质量和自旋相关。

We compile observations of high-frequency quasi-periodic oscillations (QPOs) around black holes, both stellar and supermassive, and compare their positions in the parameter space of black hole mass, spin, and oscillation frequency. We find that supermassive black holes occupy a separate region of parameter space than stellar, and further, that QPOs seen around tidal disruption events rather than Seyfert-type AGN occupy an entirely different space. We then compare these results to the orbital resonance, diskoseismic, warped disk, and disk-jet coupling theoretical models for the origin of high-frequency QPOs. We find that while oscillations around stellar mass black holes are generally consistent with the above models, supermassive black holes are decidedly not. Oscillations seen in tidal disruption events are consistent with oscillations near the frequency of the innermost stable circular orbit (ISCO), while QPOs in AGN are not accounted for by any of the physical models in consideration. This indicates that despite the scale invariance of accretion processes implied by a decades-wide correlation between QPO frequency and black hole mass, any theory of high frequency QPOs must relate the frequency to more than just the mass and spin.

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