Relaxed blue ellipticals: accretion-driven stellar growth is a key evolutionary channel for low mass elliptical galaxies
Ilin Lazar, Sugata Kaviraj, Garreth Martin, Clotilde Laigle, Aaron E., Watkins, Ryan A. Jackson

TL;DR
This study reveals that low-mass blue elliptical galaxies mainly grow through secular gas accretion rather than mergers, challenging traditional views on elliptical galaxy formation.
Contribution
It demonstrates that secular gas accretion is a key driver of stellar growth in low-mass ellipticals, supported by deep imaging and environmental analysis.
Findings
Less than 3% show tidal features, indicating minimal merger activity.
Blue ellipticals are found in low-density environments, away from cosmic web nodes.
They outnumber red ellipticals at similar mass, suggesting they are progenitors of more massive ellipticals.
Abstract
How elliptical galaxies form is a key question in observational cosmology. While the formation of massive ellipticals is strongly linked to mergers, the low mass (Mstar < 10^9.5 MSun) regime remains less well explored. In particular, studying elliptical populations when they are blue, and therefore rapidly building stellar mass, offers strong constraints on their formation. Here, we study 108 blue, low-mass ellipticals (which have a median stellar mass of 10^8.7 MSun) at z < 0.3 in the COSMOS field. Visual inspection of extremely deep optical HSC images indicates that less than 3 per cent of these systems have visible tidal features, a factor of 2 less than the incidence of tidal features in a control sample of galaxies with the same distribution of stellar mass and redshift. This suggests that the star formation activity in these objects is not driven by mergers or interactions but by…
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