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首页> 外文期刊>The Astrophysical journal >Ionization, Magnetorotational, and Gravitational Instabilities in Thin Accretion Disks Around Supermassive Black Holes
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Ionization, Magnetorotational, and Gravitational Instabilities in Thin Accretion Disks Around Supermassive Black Holes

机译:超大质量黑洞周围的薄吸积盘中的电离,磁旋转和引力不稳定性

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We consider the combined role of the thermal ionization, magnetorotational, and gravitational instabilities in thin accretion disks around supermassive black holes. We find that in the portions of the disk unstable to the ionization instability, the gas remains well coupled to the magnetic field even on the cold, neutral branch of the thermal limit cycle. This suggests that the ionization instability is not a significant source of large-amplitude time-dependent accretion in active galactic nuclei (AGNs). We also argue that, for 10-2 M☉ yr-1, the gravitationally unstable and magnetorotationally unstable regions of the accretion disk overlap; for lower accretion rates they may not. Some low-luminosity AGN, e.g., NGC 4258, may thus be in a transient phase in which mass is building up in a nonaccreting gravitationally and magnetorotationally stable "dead zone." We comment on possible implications of these findings.
机译:我们考虑了围绕超大质量黑洞的薄吸积盘中热电离,磁旋转和重力不稳定性的综合作用。我们发现,在磁盘的对电离不稳定而言不稳定的部分中,即使在热极限循环的冷中性分支上,气体仍保持与磁场的良好耦合。这表明电离不稳定性不是活跃银河原子核(AGNs)中大幅度时间依赖性增生的重要原因。我们还认为,对于10-2M☉yr-1,吸积盘的重力不稳定和磁势不稳定区域重叠;对于较低的吸积率,他们可能不会。因此,某些低光度的AGN,例如NGC 4258,可能处于过渡阶段,在此阶段,质量在重力和磁势稳定的“死区”中堆积。我们对这些发现可能产生的影响发表评论。

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