Forged by Feedback: Stellar Properties of Brightest Group Galaxies in Cosmological Simulations
arXiv:2602.10192 · doi:10.3847/1538-4357/ae4e2a
Abstract
We investigate how different galaxy formation models impact the stellar properties of brightest group galaxies (BGGs) in four cosmological simulations: ROMULUS, SIMBA, SIMBA-C, and OBSIDIAN. The stellar masses, specific star formation rates, and mass-weighted stellar ages of the simulated BGGs are analysed alongside those of observed BGGs from X-ray-selected galaxy groups in the COSMOS field. We find that the global properties and underlying evolutionary pathways of simulated BGG populations are strongly impacted by the strength and mechanism of their respective active galactic nucleus (AGN) feedback models, which play a critical role in regulating the growth of massive galaxies. OBSIDIAN's sophisticated three-regime AGN feedback model achieves the highest overall agreement with COSMOS observations, matching stellar property distributions, quenched fractions, and the evolution of star formation in increasingly massive systems. We find evidence suggesting that BGG populations of OBSIDIAN and COSMOS undergo a gradual decline in star formation with stellar mass, in contrast to SIMBA and SIMBA-C, which display rapid quenching linked to the onset of powerful AGN jet feedback. By comparison, ROMULUS produces highly star-forming, under-quenched BGGs due to the inefficiency of its thermal AGN feedback in preventing cooling flows from fuelling BGG growth. The success of the OBSIDIAN simulation demonstrates the importance of physically motivated subgrid prescriptions for realistically capturing the processes that shape BGGs and their dynamic group environments.
References in corpus (58)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- COSMOS2020: A panchromatic view of the Universe to from two complementary catalogs
- Grackle: a Chemistry and Cooling Library for Astrophysics
- How special are Brightest Group and Cluster Galaxies?
- The UV-Optical Color Magnitude Diagram II: Physical Properties and Morphological Evolution On and Off of a Star-Forming Sequence
- The XMM-Newton wide-field survey in the COSMOS field: VI. Statistical properties of clusters of galaxies
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- A Survey of Kiloparsec-Scale Radio Outflows in Radio-Quiet Active Galactic Nuclei
- Charting the evolution of the ages and metallicities of massive galaxies since z=0.7
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- Fast, Slow, Early, Late: Quenching Massive Galaxies at z~0.8
- Resurrecting the Red from the Dead: Optical Properties of BCGs in X-ray Luminous Clusters
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- The Diversity and Variability of Star Formation Histories in Models of Galaxy Evolution
- Simulating Groups and the IntraGroup Medium: The Surprisingly Complex and Rich Middle Ground Between Clusters and Galaxies
- The Complete Local Volume Groups Sample - I. Sample Selection and X-ray Properties of the High-Richness Subsample
- Photometric Properties and Scaling Relations of Early Type Brightest Cluster Galaxies
- Which AGN Jets Quench Star Formation in Massive Galaxies?
- LoCuSS: Pre-processing in galaxy groups falling into massive galaxy clusters at z=0.2
- The Single-Cloud Star Formation Relation
- Massive Galaxies are Larger in Dense Environments: Environmental Dependence of Mass-Size Relation of Early-Type Galaxies
- Mining the gap: evolution of the magnitude gap in X-ray galaxy groups from the 3 square degree XMM coverage of CFHTLS
- Ultra-deep catalog of X-ray groups in the Extended Chandra Deep Field South
- Constraining the era of helium reionization using fast radio bursts
- Clocking the formation of today's largest galaxies: Wide field integral spectroscopy of Brightest Cluster Galaxies and their surroundings
- Gas condensation in Brightest Group Galaxies unveiled with MUSE
- Brightest Cluster Galaxies in Cosmological Simulations with Adaptive Mesh Refinement: Successes and Failures
- Massive central galaxies of galaxy groups in the Romulus simulations: an overview of galaxy properties at z=0
- Evolution and Role of Mergers in the BCG-Cluster Alignment. A View from Cosmological Hydro-Simulations
- Brightest group galaxies and the large-scale environment
- Star formation and quenching among the most massive galaxies at z~1.7
- A unified accretion disc model for supermassive black holes in galaxy formation simulations: method and implementation
- SFR estimations from z=0 to z=0.9 -- A comparison of SFR calibrators for star-forming galaxies
- Properties of brightest group galaxies in cosmic web filaments
- SIMBA-C: An updated chemical enrichment model for galactic chemical evolution in the SIMBA simulation
- Merger histories of brightest group galaxies from MUSE stellar kinematics
- The Complete Local Volume Groups Sample -- IV. Star formation and gas content in group-dominant galaxies
- Velocity dispersion of the brightest cluster galaxies in cosmological simulations
- The Obsidian model: Three regimes of black hole feedback
- Circumnuclear Structures in Megamaser Host Galaxies
- Kinematic unrest of low mass galaxy groups
- Brightest group galaxies-II: the relative contribution of BGGs to the total baryon content of groups at z<1.3
- The Manhattan Suite: Accelerated galaxy evolution in the early Universe
- The quenching time scale and quenching rate of galaxies
- The Stellar Mass Assembly of Low Redshift, Massive, Central Galaxies in SDSS and the TNG300 simulation
- The special growth history of central galaxies in groups and clusters
- The Physical Nature of Circumgalactic Medium Absorbers in Simba
- Halo Scaling Relations and Hydrostatic Mass Bias in the Simba Simulation From Realistic Mock X-ray Catalogues
- AMICO-COSMOS galaxy cluster and group catalogue up to : Sample properties and X-ray counterparts
- COSMOS Brightest Group Galaxies -- III: Evolution of stellar ages
- COSMOS Web: Morphological quenching and size-mass evolution of brightest group galaxies from z = 3.7
- Core to Cosmic Edge: SIMBA-C's New Take on Abundance Profiles in the Intragroup Medium at z = 0
- Weak lensing constraints on the stellar-to-halo mass relation of galaxy groups with simulation-informed scatter
- A Spatially Resolved Evolutionary Sequence of Multi-wavelength AGN Host Galaxies