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Relative growth of black holes and the stellar components of galaxies

机译:黑洞的相对生长和星系的恒星成分

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Recent observations indicate that the mass of supermassive black holes (SMBHs) correlate differently with different galaxy stellar components. Comparing such observations with the results of “ab initio" galaxy formation models can provide insight on the mechanisms leading to the growth of SMBHs. Here we use a state-of-the-art semi-analytic model of galaxy formation to investigate the correlation of the different galaxy stellar components with the mass of the central SMBH. The stellar mass in the disc, in the bulge, and in the pseudo-bulge of galaxies is related to quiescent star formation, to galaxy interactions, and to the loss of angular momentum following disc instabilities, respectively. Consistently with recent findings, we find that while the predicted bulge masses are tightly correlated with the SMBH masses, the correlation between the latter and the galactic discs shows a much larger scatter, in particular when bulgeless galaxies are considered. In addition, we obtain that the predicted masses of pseudo-bulges shows little or no-correlation with the masses of SMBHs. We track the histories of merging, star formation, and SMBH accretion to investigate the physical processes at the origin of such findings within the context of cosmological models of galaxy formation. Finally, we discuss the effects of variations of our assumed fiducial model on the results.
机译:最近的观察表明,超大质量黑洞(SMBH)的质量与不同星系恒星成分的相关性不同。将这些观察结果与“从头算起”星系形成模型的结果进行比较,可以洞悉导致SMBHs增长的机制,在这里,我们使用最先进的星系形成半分析模型来研究星系形成的相关性。不同的星系恒星组成与中央SMBH的质量。盘中,星系的凸起和假凸起中的恒星质量与静止恒星的形成,星系的相互作用以及角动量的损失有关。与最近的发现一致,我们发现,尽管预测的凸起质量与SMBH质量紧密相关,但后者与星系盘之间的相关性显示出更大的散射,特别是在考虑了无凸起星系的情况下。此外,我们获得了预测的假凸起质量与SMBHs的质量几乎没有或没有相关性,我们跟踪了合并,恒星形成, ND SMBH可在银河系形成的宇宙学模型的背景下调查此类发现的起源的物理过程。最后,我们讨论假设基准模型的变化对结果的影响。

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