Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on the chemical evolution of this important Galaxy component, however the spread around the mean slope is, at fixed Galactocentric distance, more than the estimated uncertainties. Methods. To provide quantitative constraints on these trends, we adopted iron abundances for 265 classical Cepheids (more than 50% of the currently known sample) based either on high-resolution spectra or on photometric metallicity indices. Homogeneous distances were estimated using near-infrared period-luminosity relations. The sample covers the four disk quadrants, and their Galactocentric distances range from ~5 to ~17 kpc. We provided a ne...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
Context. Classical Cepheids are excellent tracers of intermediate-mass stars, since their distances...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for 42 Galactic Cepheids based on high...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for 42 Galactic Cepheids based on high resolutio...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
Context. Classical Cepheids are excellent tracers of intermediate-mass stars, since their distances...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
International audienceAims: The iron abundance gradient in the Galactic stellar disk provides fundam...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for 42 Galactic Cepheids based on high...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for 42 Galactic Cepheids based on high resolutio...
Aims. The iron abundance gradient in the Galactic stellar disk provides fundamental constraints on t...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
We present homogeneous and accurate iron abundances for almost four dozen (47) of Galactic Cepheids ...
Context. Classical Cepheids are excellent tracers of intermediate-mass stars, since their distances...