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Probing the Growth of Massive Black Holes with Black Hole–Host Galaxy Spin Correlations

机译:用黑洞主机星系旋转相关性探测大规模黑洞的生长

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Supermassive black holes are commonly found at the centers of their host galaxies, but their formation still remains an open question. In light of the tight correlation between the black hole (BH) mass and the velocity dispersions of the bulge component of the host galaxy, a BH–host galaxy coevolution scenario has been established. Such a description, however, still contains many theoretical uncertainties, including puzzles about the formation of BH seeds at high redshifts and the growth channel fueling these seeds. In this work, we systematically analyze the signatures of different growth channels on massive BH (MBH) spins. We show that different growth channels can be partially distinguished with the magnitudes of MBH spins inferred from extreme-mass-ratio inspirals detected by the Laser Interferometer Space Antenna. In addition, we propose measuring the correlation between the directions of MBH spins and their host galaxy spins, which is possible for extreme-mass-ratio inspirals happening in low-redshift galaxies ( ). With the inclusion of spin direction correlation different formation channels shall be significantly better constrained.
机译:超级分类的黑洞通常在他们的宿主星系的中心找到,但它们的形成仍然是一个开放的问题。鉴于黑洞(BH)质量与主机星系的凸起部件的速度分散之间的紧密相关性,已经建立了BH-Host Galaxy Coevolutive情景。然而,这种描述仍然包含许多理论不确定性,包括关于在高射频中形成BH种子的难题和促进这些种子的生长通道。在这项工作中,我们系统地分析了大规模BH(MBH)旋转的不同增长通道的签名。我们表明,不同的生长通道可以与由激光干涉仪空间天线检测到的极母比率的血管旋转推断的MBH旋转的大小分开。此外,我们提出了测量MBH旋转方向与其宿主星系旋转之间的相关性,这对于低红移星系()中发生的极端质量比率的鼓舞人员是可能的。随着旋转方向相关性的含有不同的形成通道应明显更好地限制。

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