The influence of chemical composition on the properties of Cepheid stars. II-The iron content
M. Romaniello, F. Primas, M. Mottini, S. Pedicelli, B. Lemasle, G., Bono, P. Fran\c{c}ois, M.A.T. Groenewegen, C. D. Laney

TL;DR
This study investigates how the iron content in Cepheid stars influences their period-luminosity relation, revealing a metallicity effect in the V-band but inconclusive results in the K-band, which impacts extragalactic distance measurements.
Contribution
It provides new high-resolution iron abundance measurements for Magellanic Cepheids and analyzes their impact on the PL relation, especially in the V-band.
Findings
Metal-rich Cepheids are systematically fainter in V-band.
Magellanic Cepheids' iron abundances are measured with high precision.
Metallicity affects the V-band PL relation but not conclusively in the K-band.
Abstract
The Cepheid period-luminosity (PL) relation is unquestionably one of the most powerful tools at our disposal for determining the extragalactic distance scale. While significant progress has been made in the past few years towards its understanding and characterization both on the observational and theoretical sides, the debate on the influence that chemical composition may have on the PL relation is still unsettled. With the aim to assess the influence of the stellar iron content on the PL relation in the V and K bands, we have related the V-band and the K-band residuals from the standard PL relations of Freedman et al. (2001) and Persson et al. (2004), respectively, to [Fe/H]. We used direct measurements of the iron abundances of 68 Galactic and Magellanic Cepheids from FEROS and UVES high-resolution and high signal-to-noise spectra. We find a mean iron abundance ([Fe/H]) about solar…
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