On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk
arXiv:1403.6128 · doi:10.1051/0004-6361/201323198
Abstract
We present homogeneous and accurate iron abundances for 42 Galactic Cepheids based on high-spectral resolution (R~38,000) high signal-to-noise ratio (SNR>100) optical spectra collected with UVES at VLT (128 spectra). The above abundances were complemented with high-quality iron abundances provided either by our group (86) or available in the literature. We paid attention in deriving a common metallicity scale and ended up with a sample of 450 Cepheids. We also estimated for the entire sample accurate individual distances by using homogeneous near-infrared photometry and the reddening free Period-Wesenheit relations. The new metallicity gradient is linear over a broad range of Galactocentric distances (Rg~5-19 kpc) and agrees quite well with similar estimates available in the literature (-0.060+/-0.002 dex/kpc). We also uncover evidence which suggests that the residuals of the metallicity gradient are tightly correlated with candidate Cepheid Groups (CGs). The candidate CGs have been identified as spatial overdensities of Cepheids located across the thin disk. They account for a significant fraction of the residual fluctuations, and in turn for the large intrinsic dispersion of the metallicity gradient. We performed a detailed comparison with metallicity gradients based on different tracers: OB stars and open clusters. We found very similar metallicity gradients for ages younger than 3 Gyrs, while for older ages we found a shallower slope and an increase in the intrinsic spread. The above findings rely on homogeneous age, metallicity and distance scales. Finally we found, by using a large sample of Galactic and Magellanic Cepheids for which are available accurate iron abundances, that the dependence of the luminosity amplitude on metallicity is vanishing.
Accepted in A&A, 11 figures, 7 tables
References in corpus (20)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- The influence of chemical composition on the properties of Cepheid stars. II-The iron content
- The most massive stars in the Arches cluster
- The evolution of the Galactic metallicity gradient from high-resolution spectroscopy of open clusters
- ARGOS II: The Galactic Bulge Survey
- Old open clusters in the outer Galactic disk
- Abundance gradients in the Milky Way for alpha elements, Iron peak elements, Barium, Lanthanum and Europium
- The distance to the Galactic Centre based on Population-II Cepheids and RR Lyrae stars
- Open clusters as key tracers of Galactic chemical evolution. III. Element abundances in Berkeley 20, Berkeley 29, Collinder 261, and Melotte 66
- The chemical abundance of the very metal rich old Open Clusters NGC 6253 and NGC 6791
- Galactic abundance gradients from Cepheids : On the iron abundance gradient around 10-12 kpc
- On the distance of the Magellanic Clouds using Cepheid NIR and optical-NIR Period Wesenheit Relations
- Metallicities for 13 nearby open clusters from high-resolution spectroscopy of dwarf and giant stars. Stellar metallicity, stellar mass, and giant planets
- Stellar models with the ML2 theory of convection
- New homogeneous iron abundances of double-mode Cepheids from high-resolution echelle spectroscopy
- Observational templates of star cluster disruption. The stellar group NGC 1901 in front of the Large Magellanic Cloud
- Breaks in the Radial Oxygen Abundance and Corotation Radius of Three Spiral Galaxies
- The anticenter old open cluster NGC 1883: radial velocity and metallicity
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