On the origin of star formation quenching in massive galaxies at in the cosmological simulations IllustrisTNG
arXiv:2310.03083 · doi:10.1093/mnras/stae2297
Abstract
Using the cosmological simulations IllustrisTNG, we perform a comprehensive analysis of quiescent, massive galaxies at . The goal is to understand what suppresses their star formation so early in cosmic time, and how other similar mass galaxies remain highly star-forming. As a first-order result, the simulations are able to produce massive, quiescent galaxies in this high-redshift regime. We find that active galactic nuclei (AGN) feedback is the primary cause of halting star formation in early, massive galaxies. Not only do the central, supermassive black holes (SMBHs) of the quenched galaxies have earlier seed times, but they also grow faster than in star-forming galaxies. As a result, the quenched galaxies are exposed to AGN feedback for longer, and experience the kinetic, jet-mode of the AGN feedback earlier than the star-forming galaxies. The release of kinetic energy reduces inflows of gas while likely maintaining outflows, which keeps a low cold gas fraction and decreases the star formation of the galaxies down to a state of quiescence. In addition to AGN feedback, we also investigate the influence of the large-scale environment. While mergers do not play a significant role in the quenching process, the quenched galaxies tend to reside in more massive halos and denser regions during their evolution. As this provides a greater initial amount of infalling gas to the galaxies, the large-scale environment can mildly affect the fate of the central SMBH growth and, via AGN feedback, contribute to star formation quenching.
15 pages, 7 figures, accepted for publication in MNRAS
References in corpus (49)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- A unified model for AGN feedback in cosmological simulations of structure formation
- The Illustris simulation: the evolving population of black holes across cosmic time
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Kiloparsec-scale outflows are prevalent among luminous AGN: outflows and feedback in the context of the overall AGN population
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Radio galaxies and feedback from AGN jets
- A massive quiescent galaxy at redshift 4.658
- Evidence for Wide-Spread AGN Driven Outflows in the Most Massive z~1-2 Star Forming Galaxies
- An Atlas of Color-selected Quiescent Galaxies at in Public Fields
- COSMOS2020: The Galaxy Stellar Mass Function: the assembly and star formation cessation of galaxies at
- Ejective and preventative: the IllustrisTNG black hole feedback and its effects on the thermodynamics of the gas within and around galaxies
- Dynamics of Dusty Radiation Pressure Driven Shells and Clouds: Fast Outflows from Galaxies, Star Clusters, Massive Stars, and AGN
- Quenched fractions in the IllustrisTNG simulations: the roles of AGN feedback, environment, and pre-processing
- How AGN Jets Heat the Intracluster Medium -- Insights from Hydrodynamic Simulations
- A surprising abundance of massive quiescent galaxies at 3 < z < 5 in the first data from JWST CEERS
- Quenched fractions in the IllustrisTNG simulations: comparison with observations and other theoretical models
- The impact of mechanical AGN feedback on the formation of massive early-type galaxies
- Adding Environmental Gas Physics to the Semi-Analytic Method for Galaxy Formation: Gravitational Heating
- The influence of the environmental history on quenching star formation in a CDM universe
- The Massive Ancient Galaxies At NEar-infrared (MAGAZ3NE) Survey: Confirmation of Extremely Rapid Star-Formation and Quenching Timescales for Massive Galaxies in the Early Universe
- The uniformity and time-invariance of the intra-cluster metal distribution in galaxy clusters from the IllustrisTNG simulations
- The quenching of the star formation activity in cluster galaxies
- Supermassive black holes as the regulators of star formation in central galaxies
- A population of faint, old, and massive quiescent galaxies at 3 < z < 4 revealed by JWST NIRSpec Spectroscopy
- Co-evolution of massive black holes and their host galaxies at high redshift: discrepancies from six cosmological simulations and the key role of JWST
- The Circumgalactic Medium of Milky Way-like Galaxies in the TNG50 Simulation -- I: Halo Gas Properties and the Role of SMBH Feedback
- Black hole evolution: II. Spinning black holes in a supernova-driven turbulent interstellar medium
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- Massive and old quiescent galaxies at high redshift
- COSMOS2020: Exploring the dawn of quenching for massive galaxies at 3 < z < 5 with a new colour selection method
- AGN jet feedback on a moving mesh: gentle cluster heating by weak shocks and lobe disruption
- The emergence of passive galaxies in the early Universe
- Rapid Quenching of Galaxies at Cosmic Noon
- Interacting galaxies in the IllustrisTNG simulations -- III: (the rarity of) quenching in post-merger galaxies
- Blandford-Znajek jets in galaxy formation simulations: exploring the diversity of outflows produced by spin-driven AGN jets in Seyfert galaxies
- Beyond UVJ: Color Selection of Galaxies in the JWST Era
- The First Quiescent Galaxies in TNG300
- Self-regulated AGN feedback of light jets in cool-core galaxy clusters
- The impact of AGN-driven winds on physical and observable galaxy sizes
- The Obsidian model: Three regimes of black hole feedback
- The FENIKS Survey: Spectroscopic Confirmation of Massive Quiescent Galaxies at z ~ 3-5
- Co-Evolution vs. Co-existence: The Effect of Accretion Modelling on the Evolution of Black Holes and Host Galaxies
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- Gas outflows in two recently quenched galaxies at z = 4 and 7
- More is better: Strong constraints on the stellar properties of LEGA-C z ~ 1 galaxies with Prospector
- Discrepancies Between JWST Observations and Simulations of Quenched Massive Galaxies at : A Comparative Study With IllustrisTNG and ASTRID
- Magnetic dynamos in galaxy clusters: the crucial role of galaxy formation physics at high redshifts
- Inferring redshift and galaxy properties via a multi-task neural net with probabilistic outputs: An application to simulated MOONS spectra
- Quenching of Galaxies at Cosmic Noon: Understanding the Effect of Environment
- The VANDELS Survey: Star formation and quenching in two over-densities at 3 < z < 4
- On the unique evolutionary mechanisms of massive quiescent galaxies in the epoch of reionisation
- The Connection between Dusty Star-Forming Galaxies and the First Massive Quenched Galaxies
- AGN Feedback: The impact of galactic-scale radio jets on the interstellar medium in starbursting obscured AGN
- The Cosmic Rush Hour: Rapid Formation of Bright, Massive, Disky, Star-Forming Galaxies as Signatures of Early-Universe Physics