Context. The [Mg/Fe] abundance ratios are a fundamental fossil signature to trace the chemical evolution of the disc. Despite of the huge observational and theoretical effort, discrepancies between models and data are still present and several explanations have been put forward to explain the [$\alpha$/Fe] bimodality. Aims. In this work, we take advantage of a new AMBRE:HARPS dataset, which provides new and more precise [Mg/Fe] estimations, as well as reliable stellar ages for a subsample of stars, to study the evolution of the solar neighbourhood. Methods. The above data are compared with detailed chemical evolution models for the Milky Way, exploring the most used prescriptions for stellar yields and different formation scenarios for the ...
Context. The analysis of the latest release of the Apache Point Observatory Galactic Evolution Exper...
An ensemble of chemical abundances probing different nucleosynthetic channels can be leveraged to bu...
We present isochrone ages and initial bulk metallicities ([Fe/H]bulk, by accounting for diffusion) o...
Context. The [Mg/Fe] abundance ratios are a fundamental fossil signature used to trace the chemical ...
The analysis of the APOGEE data suggests the existence of a clear distinction between two sequences ...
International audienceContext. The abundance of α-elements relative to iron ([α/Fe]) is an important...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society,...
Uncertainties in stellar nucleosynthesis and their impact on models of chemical evolution are discus...
8We study the chemical evolution of the thick and thin discs of the Galaxy by comparing detailed che...
Using a sample of red giant stars from the Apache Point Observatory Galactic Evolution Experiment (A...
We present a multi-zone galactic chemical evolution (GCE) model for the Milky Way that takes the mos...
Context. The pattern of chemical abundance ratios in stellar populations of the Milky Way is a finge...
Context. The analysis of the latest release of the Apache Point Observatory Galactic Evolution Exper...
An ensemble of chemical abundances probing different nucleosynthetic channels can be leveraged to bu...
We present isochrone ages and initial bulk metallicities ([Fe/H]bulk, by accounting for diffusion) o...
Context. The [Mg/Fe] abundance ratios are a fundamental fossil signature used to trace the chemical ...
The analysis of the APOGEE data suggests the existence of a clear distinction between two sequences ...
International audienceContext. The abundance of α-elements relative to iron ([α/Fe]) is an important...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society,...
Uncertainties in stellar nucleosynthesis and their impact on models of chemical evolution are discus...
8We study the chemical evolution of the thick and thin discs of the Galaxy by comparing detailed che...
Using a sample of red giant stars from the Apache Point Observatory Galactic Evolution Experiment (A...
We present a multi-zone galactic chemical evolution (GCE) model for the Milky Way that takes the mos...
Context. The pattern of chemical abundance ratios in stellar populations of the Milky Way is a finge...
Context. The analysis of the latest release of the Apache Point Observatory Galactic Evolution Exper...
An ensemble of chemical abundances probing different nucleosynthetic channels can be leveraged to bu...
We present isochrone ages and initial bulk metallicities ([Fe/H]bulk, by accounting for diffusion) o...