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首页> 外文期刊>The Astrophysical journal >Kinematic Density Waves In Accretion Disks
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Kinematic Density Waves In Accretion Disks

机译:吸积盘中的运动密度波

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When thin accretion disks around black holes are perturbed, the main restoring force is gravity. If gas pressure, magnetic stresses, and radiation pressure are neglected, the disk remains thin as long as orbits do not intersect. Intersections would result in pressure forces which limit the growth of perturbations. We find that a discrete set of perturbations is possible for which orbits remain nonintersecting for arbitrarily long times. These modes define a discrete set of frequencies. We classify all long-lived perturbations for arbitrary potentials and show how their mode frequencies are related to pattern speeds computed from the azimuthal and epicyclic frequencies. We show that modes are concentrated near radii where the pattern speed has vanishing radial derivative. We explore these modes around Ken-black holes as a possible explanation for the high-frequency quasi-periodic oscillations of black hole binaries such as GRO j1655- 40. The long-lived modes are shown to coincide with diskoseismic waves in the limit of small sound speed. While the waves have long lifetimes, they have the wrong frequencies to explain the pairs of high-frequency quasi-periodic oscillations observed in black hole binaries.
机译:当扰动黑洞周围的薄吸积盘时,主要的恢复力是重力。如果忽略了气压,磁力应力和辐射压力,只要轨道不相交,圆盘就会变薄。相交会导致压力,从而限制扰动的增长。我们发现,离散的扰动集是可能的,对于这些扰动,轨道在任意长时间内保持不相交。这些模式定义了一组离散的频率。我们对任意电位的所有长寿命扰动进行分类,并显示它们的模频率与从方位角和周转频率计算出的模式速度如何相关。我们显示模式集中在半径附近,其中模式速度的径向导数消失了。我们在Ken黑洞周围探索这些模式,以解释黑洞二进制文件(如GRO j1655- 40)的高频准周期振荡。长寿命模式在较小的极限范围内与磁盘地震波重合。音速。尽管这些波具有长寿命,但它们的频率不正确,无法解释在黑洞二进制文件中观察到的一对高频准周期振荡。

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