Aims. We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galactic radius to provide new constraints on the chemical evolution models of the Galaxy and Galaxy models such as the Besançon model. Thanks to the large number of stars of our RAVE sample we can study how the gradients vary as function of the distance from the Galactic plane. Methods. We analysed three different samples selected from three independent datasets: a sample of 19 962 dwarf stars selected from the RAVE database, a sample of 10 616 dwarf stars selected from the Geneva-Copenhagen Survey (GCS) dataset, and a mock sample (equivalent to the RAVE sample) created ...
We investigate the Milky Way Galaxy's radial and vertical metallicity gradients using a sample of 47...
Context. Galactic abundance gradients set strong constraints to chemo-dynamical evolutionary models ...
Context. The Apache Point Observatory Galactic Evolution Experiment (APOGEE) features the first mult...
Aims. We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galact...
Aims. We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galact...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aim: We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galacti...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the radial an...
We model the abundance gradients in the disk of the Milky Way for several chemical elements (O, Mg,...
International audienceWe present evidence from the RAdial Velocity Experiment (RAVE) survey of chemi...
International audienceWe model the abundance gradients in the disk of the Milky Way for several chem...
Aims. We examine radial and vertical metallicity gradients using a suite of disk galaxy hydrodynamic...
We investigate the Milky Way Galaxy's radial and vertical metallicity gradients using a sample of 47...
Context. Galactic abundance gradients set strong constraints to chemo-dynamical evolutionary models ...
Context. The Apache Point Observatory Galactic Evolution Experiment (APOGEE) features the first mult...
Aims. We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galact...
Aims. We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galact...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aim: We aim at measuring the chemical gradients of the elements Mg, Al, Si, and Fe along the Galacti...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
Aims. We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the rad...
We provide new constraints on the chemo-dynamical models of the Milky Way by measuring the radial an...
We model the abundance gradients in the disk of the Milky Way for several chemical elements (O, Mg,...
International audienceWe present evidence from the RAdial Velocity Experiment (RAVE) survey of chemi...
International audienceWe model the abundance gradients in the disk of the Milky Way for several chem...
Aims. We examine radial and vertical metallicity gradients using a suite of disk galaxy hydrodynamic...
We investigate the Milky Way Galaxy's radial and vertical metallicity gradients using a sample of 47...
Context. Galactic abundance gradients set strong constraints to chemo-dynamical evolutionary models ...
Context. The Apache Point Observatory Galactic Evolution Experiment (APOGEE) features the first mult...