On the metallicity distribution of classical Cepheids in the Galactic inner disk
K. Genovali (1), B. Lemasle (2), G. Bono (1, 3), M. Romaniello (4),, F. Primas (4), M. Fabrizio (5), R. Buonanno (1, 5), P. Fran\c{c}ois (6 and, 7), L. Inno (1, 4), C.D. Laney (8, 9), N. Matsunaga (10), S. Pedicelli, (1), F. Th\'evenin (11) ((1) Dipartimento di Fisica

TL;DR
This study provides precise iron abundance measurements for 47 Galactic Cepheids, revealing a metallicity increase towards the inner disk and differences in chemical enrichment history across Galactic regions.
Contribution
It offers homogeneous, high-resolution spectroscopic data for inner disk Cepheids and expands the metallicity distribution analysis across the Galactic disk.
Findings
Iron abundance increases towards the inner disk.
No correlation between iron abundance and distance from the Galactic plane.
Inner disk Cepheids have higher metallicity than those near the Galactic bar or bulge.
Abstract
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids using high-spectral resolution (R40,000) high signal-to-noise ratio (S/N 100) optical spectra collected with UVES at VLT. A significant fraction of the sample (32) is located in the inner disk (RG 6.9 kpc) and for half of them we provide new iron abundances. Current findings indicate a steady increase in iron abundance when approaching the innermost regions of the thin disk. The metallicity is super-solar and ranges from 0.2 dex for RG 6.5 kpc to 0.4 dex for RG 5.5 kpc. Moreover, we do not find evidence of correlation between iron abundance and distance from the Galactic plane. We collected similar data available in the literature and ended up with a sample of 420 Cepheids. Current data suggest that the mean metallicity and the metallicity dispersion in the…
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