论文标题
磁盘撕裂会导致薄胶盘的GRMHD模拟中的低频和高频准周期性振荡
Disk Tearing Leads to Low and High Frequency Quasi Periodic Oscillations in a GRMHD Simulation of a Thin Accretion Disk
论文作者
论文摘要
黑洞X射线二进制文件(BHXRBS)显示出广泛的可变性现象,从长时间的光谱状态变化到短期宽带可变性和准周期性振荡(QPOS)。一个特别令人困惑的方面是QPO的生产,如果正确理解,可以用作黑洞积聚和进化的强大诊断工具。在这项工作中,我们分析了高分辨率的三维一般相对论磁性磁动力模拟的几何薄积分盘,该磁盘与黑洞旋转轴相对于$ 65^{\ circ} $倾斜。我们发现,迅速旋转10 $ m_ \ odot $黑洞的透镜扭矩导致几个子盘在$ \ sim 10-20 $引力半径内拆除。撕裂发生在几秒钟的时间尺度上。在每个撕裂循环中,内部二盘进攻在落入黑洞之前先进行1-5个时期。我们发现$ \ sim 3 \ rm Hz $的进进频率与观察到的低频QPO一致。此外,我们在内磁盘的大规模加权半径的功率光谱中找到了一个高频QPO(HFQPO),其质心频率为$ \ sim55 $ hz。该信号是由撕裂半径处的密集气体环的径向环环振荡引起的,这强烈表明X射线灯曲线的相应调制,因此可以解释某些观察到的HFQPOS。
Black hole X-ray binaries (BHXRBs) display a wide range of variability phenomena, from long duration spectral state changes to short-term broadband variability and quasi-periodic oscillations (QPOs). A particularly puzzling aspect is the production of QPOs, which -- if properly understood -- could be used as a powerful diagnostic tool of black hole accretion and evolution. In this work we analyse a high resolution three-dimensional general relativistic magnetohydrodynamic simulation of a geometrically thin accretion disk which is tilted by $65^{\circ}$ with respect to the black hole spin axis. We find that the Lense-Thirring torque from the rapidly spinning 10 $M_\odot$ black hole causes several sub-disks to tear off within $\sim 10-20$ gravitational radii. Tearing occurs in cycles on timescales of seconds. During each tearing cycle the inner sub-disk precesses for 1-5 periods before it falls into the black hole. We find a precession frequency of $\sim 3\rm Hz$, consistent with observed low-frequency QPOs. In addition, we find a high frequency QPO (HFQPO) with centroid frequency of $\sim55$Hz in the power spectra of the mass-weighted radius of the inner disk. This signal is caused by radial epicyclic oscillations of a dense ring of gas at the tearing radius, which strongly suggests a corresponding modulation of the X-ray lightcurve and may thus explain some of the observed HFQPOs.