VLT/FLAMES spectroscopy of red giant branch stars in the Fornax dwarf spheroidal galaxy
B. Lemasle, T. de Boer, V. Hill, E. Tolstoy, M. Irwin, P. Jablonka, K., Venn, G. Battaglia, E. Starkenburg, M. Shetrone, B. Letarte, P. Francois, A., Helmi, F. Primas, A. Kaufer, T. Szeifert

TL;DR
This study uses high-resolution spectroscopy of red giant stars in the Fornax dwarf galaxy to analyze its chemical evolution, revealing the timing of supernova contributions and the galaxy's star formation history.
Contribution
It provides a comprehensive chemical abundance analysis across the full metallicity range of Fornax stars, including metal-poor stars, and links these to the galaxy's star formation and enrichment history.
Findings
Old, metal-poor stars are alpha-rich; young, metal-rich stars are alpha-poor.
SNe Ia began contributing to chemical enrichment between 12-10 Gyrs ago.
The abundance patterns suggest a top-light initial mass function and prolonged star formation.
Abstract
Fornax is one of the most massive dwarf spheroidal galaxies in the Local Group. The Fornax field star population is dominated by intermediate age stars but star formation was going on over almost its entire history. It has been proposed that Fornax experienced a minor merger event. Despite recent progress, only the high metallicity end of Fornax field stars ([Fe/H]>-1.2 dex) has been sampled in larger number via high resolution spectroscopy. We want to better understand the full chemical evolution of this galaxy by better sampling the whole metallicity range, including more metal poor stars. We use the VLT-FLAMES multi-fibre spectrograph in high-resolution mode to determine the abundances of several alpha, iron-peak and neutron-capture elements in a sample of 47 individual Red Giant Branch stars in the Fornax dwarf spheroidal galaxy. We combine these abundances with accurate age…
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