COSMOS-Web: From early star-formation enhancement to late suppression in galaxy groups
R. C. Arango-Toro, C. Laigle, J. Lewis, M. Joly, G. Toni, C. M. Casey, J. S. Kartaltepe, M. Shuntov, H. B. Akins, L. Paquereau, Y. Dubois, M. Franco, O. Ilbert, G. Aufort, A. L. Faisst, Z. Ghaffari, G. Gozaliasl, H. Hatamnia, M. Hirschmann, M. Huertas-Company, A. M. Koekemoer, R. Laishram, D. Le Borgne, G. Leroy, H. J. McCracken, L. Moscardini, A. Nuñez-Castiñeyra, R. M. Samir, M. Trebitsch, L. Tresse
Abstract
Galaxy groups trace dense environments where interactions, gas removal, and reduced accretion may drive quenching. Common diagnostics trace star formation over short timescales ( 100 Myr), so time-resolved star formation histories (SFHs) are needed to separate brief changes from longer-term evolution at fixed mass and redshift. Using COSMOS-Web data, we test how group environment correlates with star formation, how this evolves with cosmic time and group-centric distance, and how high-richness group galaxies differ from field galaxies. We combine COSMOS2025/COSMOS-Web stellar masses and non-parametric SFHs with AMICO group detections and probabilistic memberships. Using stacked SFHs and evolution diagnostics, we compare group and matched field galaxies as a function of normalized group-centric distance (R norm), using the richest groups as reference. The clearest suppression appears at z<1.5 and low-to-intermediate mass (8.1<(M/M)<10.5), reaching a group-field SFH deficit up to 0.8 dex. At z>1.5, SFHs show weak suppression or occasional enhancement, a more heterogeneous contrast despite possible systematics. The radial signal also evolves: low-redshift profiles are broadly quenching-oriented across radius, while a clear inner-outer contrast emerges at z 1, though ordering at z 2 remains tentative given growing uncertainty in AMICO centroids. These results suggest an evolving picture: at early epochs groups are more mixed, with both suppressed and elevated SFHs; from z 1.5, suppression dominates, most clearly for low-to-intermediate-mass galaxies. This fits inner-region galaxies spending more time within the group potential, undergoing more passages through dense intra-group regions, and receiving less pristine cold gas, making quenching progressively clearer with cosmic time.
Create a lesson
Related papers
Rotational spectroscopy and astronomical search of propane-1-thiol (CH3CH2CH2SH) and propane-2-thiol ((CH3)2CHSH)
Wentao Song, Assimo Maris, Victor M. Rivilla et al.
CosmoDyn: a semi-analytic post-processing framework for the dynamical evolution of compact stellar systems and black holes in cosmological simulations
Pierre Boldrini, Paola Di Matteo, David Katz et al.
CNO in Giant Metal-Poor Stars
Jannat Alazzawi
The Spitzer Data Fusion - A Far-Ultraviolet to Far-Infrared Multi-Wavelength Database in Spitzer Extragalactic Survey Fields
Mattia Vaccari
Signatures of dark subhaloes in dwarf spheroidal galaxies: II. Transient and localised kinematic features
Eduardo Vitral, Jorge Penarrubia, Roeland P. van der Marel et al.
Challenging the archetypal intermittent radio galaxy J0111+3906. New insights from optical GTC/OSIRIS and radio VLA and LOFAR observations
M. Orienti, J. A. Acosta-Pulido, E. De Rubeis et al.