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Cosmological Evolution of Supermassive Black Holes: Mass Functions and Spins

机译:超大分离的黑洞的宇宙论演变:质量功能和旋转

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We derive the mass function of supermassive black holes (SMBHs) over the redshift range 0 > z ? 2, using the latest deep luminosity and mass functions of field galaxies. Applying this mass function, combined with the bolometric luminosity function of active galactic nuclei (AGNs), into the the continuity equation of SMBH number density, we explicitly obtain the mass-dependent cosmological evolution of the radiative efficiency for accretion. We suggest that the accretion history of SMBHs and their spins evolve in two distinct regimes: an early phase of prolonged accretion, plausibly driven by major mergers, during which the black hole spins up, then switching to a period of random, episodic accretion, governed by minor mergers and internal secular processes, during which the hole spins down. The transition epoch depends on mass, mirroring other evidence for "cosmic downsizing" in the AGN population.
机译:我们通过Redshift范围0> Z获得超大分离的黑洞(SMBHS)的质量功能? 2,采用最新的野外光泽度和质量函数。将该质量函数应用于活性银核(AGNS)的辐射亮度函数,进入SMBH数密度的连续性方程中,我们明确地获得了辐射效率的质量依赖性宇宙学演变。我们建议,SMBHS的积累历史及其旋转在两个不同的制度中发展:延长增生的早期阶段,由主要合并的合理驱动,在此期间,黑洞旋转,然后切换到随机的时期,治理通过轻微的合并和内部世俗过程,孔旋转下来。过渡时期取决于质量,镜像在AGN人口中的“宇宙缩小”的其他证据。

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