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Forming Circumnuclear Disks and Rings in Galactic Nuclei: A Competition Between Supermassive Black Hole and Nuclear Star Cluster

机译:在银河核中形成环核盘和环:超大质量黑洞与核星团之间的竞争

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We investigate the formation of circumnuclear gas structures from the tidal disruption of molecular clouds in galactic nuclei by means of smoothed-particle hydrodynamics simulations. We model galactic nuclei as composed of a supermassive black hole (SMBH) and a nuclear star cluster (NSC), and consider different mass ratios between the two components. We find that the relative masses of the SMBH and the NSC have a deep impact on the morphology of the circumnuclear gas. Extended disks form only inside the sphere of influence of the SMBH. In contrast, compact rings naturally form outside the SMBH's sphere of influence, where the gravity is dominated by the NSC. This result is in agreement with the properties of the Milky Ways circumnuclear ring, which orbits outside the SMBH sphere of influence. Our results indicate that compact circumnuclear rings can naturally form outside the SMBH sphere of influence.
机译:我们通过平滑粒子流体动力学模拟研究了银河原子核中分子云的潮汐破坏引起的环核气体结构的形成。我们将银河核建模为由超大质量黑洞(SMBH)和核星团(NSC)组成,并考虑这两个成分之间的质量比不同。我们发现,SMBH和NSC的相对质量对周围核气体的形态有深远的影响。扩展磁盘仅在SMBH的影响范围内形成。相反,在SMBH的影响范围之外自然会形成紧凑的环,在那里重力由NSC控制。这一结果与银河系环核环的性质一致,该环系在SMBH影响范围之外运行。我们的结果表明,紧密的核周环可以自然地在SMBH影响范围之外形成。

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