The Carina Project. V. The impact of NLTE effects on the iron content
M. Fabrizio, T. Merle, F. Th\'evenin, M. Nonino, G. Bono, P. B., Stetson, I. Ferraro, G. Iannicola, M. Monelli, A. R. Walker, R. Buonanno, F., Caputo, C. E. Corsi, M. Dall'Ora, S. Degl'Innocenti, P. Fran\c{c}ois, R., Gilmozzi, M. Marconi, A. Pietrinferni, P. G. Prada Moroni

TL;DR
This study measures iron abundances in 44 red giants in the Carina dwarf galaxy, highlighting the importance of NLTE effects and providing refined metallicity estimates using high-resolution spectra.
Contribution
It presents the first large-scale high-resolution spectroscopic analysis of Carina RGs accounting for NLTE effects, improving metallicity accuracy.
Findings
Carina's mean metallicity is around -1.8 dex.
NLTE effects cause discrepancies between FeI and FeII abundances.
Corrected FeI abundances align well with FeII-based estimates.
Abstract
We have performed accurate iron abundance measurements for 44 red giants (RGs) in the Carina dwarf spheroidal (dSph) galaxy. We used archival, high-resolution spectra (R~38,000) collected with UVES at ESO/VLT either in slit mode (5) or in fiber mode (39, FLAMES/GIRAFFE-UVES). The sample is more than a factor of four larger than any previous spectroscopic investigation of stars in dSphs based on high-resolution (R>38,000) spectra. We did not impose the ionization equilibrium between neutral and singly-ionized iron lines. The effective temperatures and the surface gravities were estimated by fitting stellar isochrones in the V, B-V color-magnitude diagram. To measure the iron abundance of individual lines we applied the LTE spectrum synthesis fitting method using MARCS model atmospheres of appropriate metallicity. We found evidence of NLTE effects between neutral and singly-ionized iron…
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