Abundance ratios in dwarf elliptical galaxies
\c{S}. \c{S}en, R. F. Peletier, A. Boselli, M. den Brok, J., Falc\'on-Barroso, G. Hensler, J. Janz, E. Laurikainen, T. Lisker, J. J., Mentz, S. Paudel, H. Salo, A. Sybilska, E. Toloba, G. van de Ven, A. Vazdekis, and C. Yesilyaprak

TL;DR
This study investigates the chemical abundance ratios in dwarf elliptical galaxies in the Virgo cluster, revealing distinct elemental patterns that suggest complex formation histories and extended star formation.
Contribution
It provides the first detailed abundance ratio analysis of 37 dwarf ellipticals, highlighting differences from giant ellipticals and proposing formation scenarios based on these chemical signatures.
Findings
[Na/Fe] is under-abundant compared to solar.
[Mg/Fe] is approximately solar.
Dwarf ellipticals have extended star formation histories.
Abstract
We determine abundance ratios of 37 dwarf ellipticals (dEs) in the nearby Virgo cluster. This sample is representative of the early-type population of galaxies in the absolute magnitude range -19.0 < Mr < -16.0. We analyze their absorption line-strength indices by means of index-index diagrams and scaling relations and use the stellar population models to interpret them. We present ages, metallicities and abundance ratios obtained from these dEs within an aperture size of Re/8. We calculate [Na/Fe] from NaD, [Ca/Fe] from Ca4227 and [Mg/Fe] from Mgb. We find that [Na/Fe] is under-abundant with respect to solar while [Mg/Fe] is around solar. This is exactly opposite to what is found for giant ellipticals, but follows the trend with metallicity found previously for the Fornax dwarf NGC 1396. We discuss possible formation scenarios that can result in such elemental abundance patterns and we…
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