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The link between galaxy and black hole growth in the EAGLE simulation

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arxiv 1701.01122 v2 pith:PK5FF72Q submitted 2017-01-04 astro-ph.GA

The link between galaxy and black hole growth in the EAGLE simulation

classification astro-ph.GA
keywords bharmassblackgrowgrowthhaloeslesssimm200
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the connection between the star formation rate (SFR) of galaxies and their central black hole accretion rate (BHAR) using the EAGLE cosmological hydrodynamical simulation. We find, in striking concurrence with recent observational studies, that the <SFR>--BHAR relation for an AGN selected sample produces a relatively flat trend, whilst the <BHAR>--SFR relation for a SFR selected sample yields an approximately linear trend. These trends remain consistent with their instantaneous equivalents even when both SFR and BHAR are time-averaged over a period of 100~Myr. There is no universal relationship between the two growth rates. Instead, SFR and BHAR evolve through distinct paths that depend strongly on the mass of the host dark matter halo. The galaxies hosted by haloes of mass M200 $\lesssim 10^{11.5}$Msol grow steadily, yet black holes (BHs) in these systems hardly grow, yielding a lack of correlation between SFR and BHAR. As haloes grow through the mass range $10^{11.5} \lesssim$ M200 $\lesssim 10^{12.5 }$Msol BHs undergo a rapid phase of non-linear growth. These systems yield a highly non-linear correlation between the SFR and BHAR, which are non-causally connected via the mass of the host halo. In massive haloes (M200 $\gtrsim 10^{12.5}$Msol) both SFR and BHAR decline on average with a roughly constant scaling of SFR/BHAR $\sim 10^{3}$. Given the complexity of the full SFR--BHAR plane built from multiple behaviours, and from the large dynamic range of BHARs, we find the primary driver of the different observed trends in the <SFR>--BHAR and <BHAR>--SFR relationships are due to sampling considerably different regions of this plane.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. AGN Feedback Models and AGN Demographics II: Comparing Predictions of Radiative and Total Feedback to Observations

    astro-ph.GA 2026-07 conditional novelty 6.0

    EAGLE, SIMBA, and TNG100 all fail to reproduce observed trends in which galaxies host radiatively efficient AGN, and EAGLE matches only after a factor-of-ten normalization adjustment.

  2. Columba: isolated dwarf galaxy populations in diverse cosmological environments simulated with a cold interstellar medium

    astro-ph.GA 2026-06 unverdicted novelty 5.0

    New hydrodynamical simulations show that dwarf galaxy stellar mass-halo mass relations and star formation histories are more influenced by host halo concentration than by the 5 cMpc scale environment.