paper

TRINITY VI: Connection between Galaxy Star Formation Rates and Supermassive Black Hole Accretion Rates from z=0-10

arXiv:2409.16347

Abstract

We infer supermassive black hole (SMBH) accretion rates and Eddington ratios as a function of SMBH/host galaxy mass and redshift with the empirical TRINITY model of dark matter halo--galaxy--SMBH connection. The galaxy--SMBH mass and growth rate connection from TRINITY matches galaxy observables from and SMBH observables from . Key findings include: 1) the ratio between cosmic SMBH accretion rate and galaxy star formation rate stays constant at from , and decreases by 2 orders of magnitude from ; 2) the average SMBH Eddington ratio increases towards higher redshifts, nearly reaching at ; 3) at fixed redshift for , SMBHs/galaxies with higher masses have lower , consistent with AGN downsizing; 4) the average ratio of specific SMBH accretion rate () to average specific star formation rate () is nearly mass-independent, with a value , which decreases slightly from to ; 5) similar to galaxies, SMBHs reach their peak efficiency to convert baryons into mass when host halos reach ; 6) given galaxy and SMBH growth histories from TRINITY, the local descendants of overmassive JWST AGNs will remain outliers from the local SMBH mass--galaxy mass relation. These findings combine to give a simple explanation for massive () quasars at : at these redshifts, dark matter halos grow with an -folding time of Myrs, driving similar growth rates in both galaxies and SMBHs.

14 pages, 19 figures, accepted by MNRAS