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Effects of Multichannel Active Galactic Nuclei Feedback in FIRE Cosmological Simulations of Massive Galaxies
by
Wellons, Sarah
, Anglés-Alcázar, Daniel
, Hopkins, Philip F
, Sultan, Imran
, Wijers, Nastasha
, Ponnada, Sam
, Faucher-Giguère, Claude-André
, Byrne, Lindsey
, Moreno, Jorge
in
Active galactic nuclei
/ Black holes
/ Cosmic ray showers
/ Cosmic rays
/ Feedback
/ Galactic evolution
/ Galactic halos
/ Galaxies
/ Interstellar matter
/ Interstellar medium
/ Milky Way
/ Qualitative analysis
/ Simulation
/ Star & galaxy formation
/ Star formation
/ Stellar mass
/ Supermassive black holes
2024
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Effects of Multichannel Active Galactic Nuclei Feedback in FIRE Cosmological Simulations of Massive Galaxies
by
Wellons, Sarah
, Anglés-Alcázar, Daniel
, Hopkins, Philip F
, Sultan, Imran
, Wijers, Nastasha
, Ponnada, Sam
, Faucher-Giguère, Claude-André
, Byrne, Lindsey
, Moreno, Jorge
in
Active galactic nuclei
/ Black holes
/ Cosmic ray showers
/ Cosmic rays
/ Feedback
/ Galactic evolution
/ Galactic halos
/ Galaxies
/ Interstellar matter
/ Interstellar medium
/ Milky Way
/ Qualitative analysis
/ Simulation
/ Star & galaxy formation
/ Star formation
/ Stellar mass
/ Supermassive black holes
2024
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Do you wish to request the book?
Effects of Multichannel Active Galactic Nuclei Feedback in FIRE Cosmological Simulations of Massive Galaxies
by
Wellons, Sarah
, Anglés-Alcázar, Daniel
, Hopkins, Philip F
, Sultan, Imran
, Wijers, Nastasha
, Ponnada, Sam
, Faucher-Giguère, Claude-André
, Byrne, Lindsey
, Moreno, Jorge
in
Active galactic nuclei
/ Black holes
/ Cosmic ray showers
/ Cosmic rays
/ Feedback
/ Galactic evolution
/ Galactic halos
/ Galaxies
/ Interstellar matter
/ Interstellar medium
/ Milky Way
/ Qualitative analysis
/ Simulation
/ Star & galaxy formation
/ Star formation
/ Stellar mass
/ Supermassive black holes
2024
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Effects of Multichannel Active Galactic Nuclei Feedback in FIRE Cosmological Simulations of Massive Galaxies
Journal Article
Effects of Multichannel Active Galactic Nuclei Feedback in FIRE Cosmological Simulations of Massive Galaxies
2024
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Overview
Feedback from supermassive black holes is believed to be a critical driver of the observed color bimodality of galaxies above the Milky Way mass scale. Active galactic nuclei (AGN) feedback has been modeled in many galaxy formation simulations, but most implementations have involved simplified prescriptions or a coarse-grained interstellar medium (ISM). We present the first set of Feedback In Realistic Environments (FIRE)-3 cosmological zoom-in simulations with AGN feedback evolved to z ∼ 0, examining the impact of AGN feedback on a set of galaxies with halos in the mass range 1012–1013 M ⊙. These simulations combine detailed stellar and ISM physics with multichannel AGN feedback including radiative feedback, mechanical outflows, and, in some simulations, cosmic rays (CRs). We find that massive (>L*) galaxies in these simulations can match local scaling relations including the stellar mass–halo mass relation and the M BH–σ relation; in the stronger model with CRs, they also match the size–mass relation and the Faber–Jackson relation. Many of the massive galaxies in the simulations with AGN feedback have quenched star formation and elliptical morphologies, in qualitative agreement with observations. In contrast, simulations at the massive end without AGN feedback produce galaxies that are too massive and form stars too rapidly, are order-of-magnitude too compact, and have velocity dispersions well above Faber–Jackson. Despite these successes, the AGN models analyzed do not produce uniformly realistic galaxies when the feedback parameters are held constant: While the stronger model produces the most realistic massive galaxies, it tends to overquench the lower-mass galaxies. This indicates that further refinements of the AGN modeling are needed.
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