A spectroscopic survey of dwarf galaxies in the Coma Cluster: Stellar populations, environment and downsizing
Russell J. Smith, John R. Lucey, Michael J. Hudson, Steven P., Allanson, Terry J. Bridges, Ann E. Hornschemeier, Ronald O. Marzke, Neal A., Miller

TL;DR
This spectroscopic survey of dwarf galaxies in the Coma Cluster reveals diverse stellar ages, metallicities, and element abundances, highlighting environmental effects on galaxy evolution and the growth of the red sequence over cosmic time.
Contribution
First detailed spectroscopic analysis of faint dwarf galaxies in the Coma Cluster, linking stellar populations to environment and galaxy evolution.
Findings
Oldest galaxies only in the cluster core
Red sequence established at different epochs in core and outskirts
Environmental transformation influences dwarf galaxy passive evolution
Abstract
We investigate the stellar populations in a sample of 89 faint (M*+2 to M*+4) red galaxies in the Coma cluster, using high S/N spectroscopy from the MMT. Our sample is drawn from two 1-degree fields, one centred on the cluster core and the other located a degree to the south west of the cluster centre. For a comparison sample we use published high-S/N data for red-sequence galaxies in the Shapley Supercluster. We use state-of-the-art stellar population models to infer the SSP-equivalent age and metallicity (Fe/H) for each galaxy, as well as the abundances of the light elements Mg, Ca, C and N. The ages of the Coma dwarfs span a wide range from <2 Gyr to >10 Gyr, with a strong environmental dependence. The oldest galaxies are found only in the core, while most of the galaxies in the outer south-west field have ages ~3 Gyr. The galaxies have a metallicity range -1.0 < [Fe/H] < 0.0, and…
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