The ACS Fornax Cluster Survey. X. Color Gradients of Globular Cluster Systems in Early-Type Galaxies
Chengze Liu, Eric W. Peng, Andres Jordan, Laura Ferrarese, John P., Blakeslee, Patrick Cote, Simona Mei

TL;DR
This study analyzes color gradients in globular cluster systems across 76 early-type galaxies, revealing trends related to galaxy mass and implications for galaxy formation and merger history.
Contribution
It provides the largest homogeneous dataset of GC color gradients, highlighting their dependence on galaxy mass and refining previous correlations with host galaxy properties.
Findings
Most GC systems have negative color gradients, bluer outward.
Color gradients are weakest in the most massive and dwarf galaxies, strongest at intermediate masses.
GC color gradients are steeper than those of field stars, supporting early rapid formation and merger effects.
Abstract
We use the largest homogeneous sample of globular clusters (GCs), drawn from the ACSVCS and ACSFCS, to investigate the color gradients of GC systems in 76 early-type galaxies. We find that most GC systems possess an obvious negative gradient in g-z color (bluer outwards). For GC systems displaying color bimodality, both metal-rich and metal-poor GC subpopulations present shallower but significant color gradients on average, and the mean gradients of these two subpopulations are of roughly equal strength. The FOV of ACS mainly restricts us to measuring the inner gradients of GC systems. These gradients, however, can introduce an aperture bias when measuring the mean colors of GC subpopulations from relatively narrow central pointings. Inferred corrections to previous work imply a reduced significance for the relation between the mean color of metal-poor GCs and their host galaxy…
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