论文标题

来自扭曲的黑洞的积聚磁盘的准周期振荡

Quasi-periodic oscillations from the accretion disk around distorted black holes

论文作者

Deligianni, Efthimia, Kunz, Jutta, Nedkova, Petya

论文摘要

我们研究了谐振模型框架中扭曲的Schwarzschild黑洞周围的积聚磁盘的准周期振荡。我们将自己局限于四极失真的情况,例如,这可能是由于紧凑型物体附近的积分流量引起的。出于目的,我们检查了赤道平面中圆形测量轨道的线性稳定性,并为径向和垂直环环频率提供了分析表达式。我们与孤立的Schwarzschild黑洞相比,我们研究了它们的性质。由于外部物质的影响,垂直的环保频率不再总是阳性的,并且圆形轨道的稳定性取决于两个频率之间的相互作用。结果,稳定的圆形轨道不会延伸至无穷大,而仅限于内部和外边缘稳定轨道之间的有限环形区域。此外,垂直环保频率和轨道频率之间的变性(对于Schwarzschild溶液中是特征)被损坏,并且在参数空间中存在一些区域,其中径向环环频率大于垂直频率。与隔离的Schwarzschild黑洞相比,所有这些特性都可以激发多种类型的非线性共振,这可以为观察到的Accretion Disk的Quasi-Periodic振荡频率之间观察到的3:2比率提供解释。

We study the quasi-periodic oscillations from the accretion disk around the distorted Schwarzschild black hole in the framework of the resonant models. We confine ourselves to the case of a quadrupole distortion which can be caused for example by the accreting matter flow in the vicinity of the compact object. For the purpose we examine the linear stability of the circular geodesic orbits in the equatorial plane and derive analytical expressions for the radial and vertical epicyclic frequencies. We investigate their properties in comparison with the isolated Schwarzschild black hole. Due to the influence of the external matter the vertical epicyclic frequency is not always positive anymore, and the stability of the circular orbits is determined by the interplay between both of the frequencies. As a result, the stable circular orbits do not extend to infinity, but are confined to a finite annular region between an inner and an outer marginally stable orbit. In addition, the degeneracy between the vertical epicyclic and the orbital frequency, which is characteristic for the Schwarzschild solution, is broken, and there are regions in the parametric space where the radial epicyclic frequency is larger than the vertical one. All these properties allow for much more diverse types of non-linear resonances to be excited than for the isolated Schwarzschild black hole, which can provide an explanation for the observed 3:2 ratio between the twin-peak frequencies of the quasi-periodic oscillations from the accretion disk.

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