New Constraints on a complex relation between globular cluster colors and environment
Mathieu Powalka, Thomas H. Puzia, Ariane Lan\c{c}on, Eric W. Peng,, Frederik Sch\"onebeck, Karla Alamo-Mart\'inez, Sim\'on \'Angel, John P., Blakeslee, Patrick C\^ot\'e, Jean-Charles Cuillandre, Pierre-Alain Duc,, Patrick Durrell, Laura Ferrarese, Eva K. Grebel

TL;DR
This study reveals that the environment significantly influences globular cluster colors, with variations in color-color relations linked to environmental density, suggesting complex formation histories and chemical abundance effects.
Contribution
It provides new evidence that globular cluster colors are environment-dependent, challenging simple models and highlighting the need for more complex stellar population diagnostics.
Findings
Color-color diagrams vary with environment
Denser environments show larger color index ranges
GC colors are influenced by chemical abundance variations
Abstract
We present an analysis of high-quality photometry for globular clusters (GCs) in the Virgo cluster core region, based on data from the Next Generation Virgo Cluster Survey (NGVS) pilot field, and in the Milky Way (MW) based on VLT/X-Shooter spectrophotometry. We find significant discrepancies in color-color diagrams between sub-samples from different environments, confirming that the environment has a strong influence on the integrated colors of GCs. GC color distributions along a single color are not sufficient to capture the differences we observe in color-color space. While the average photometric colors become bluer with increasing radial distance to the cD galaxy M87, we also find a relation between the environment and the slope and intercept of the color-color relations. A denser environment seems to produce a larger dynamic range in certain color indices. We argue that these…
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