Chemical abundance dating methods open new paths for temporal evolution studies of the Milky Way stellar populations. In this paper, we use a high spectral resolution database of turn-off stars in the solar neighbourhood to study the age dependence of the [Y/Mg] chemical abundance ratio. Our analysis reveals a clear correlation between [Y/Mg] and age for thin disc stars of different metallicities, in synergy with previous studies of solar-type stars. In addition, no metallicity dependence with stellar age is detected, allowing us to use the [Y/Mg] ratio as a reliable age proxy. Finally, the [Y/Mg]–age relation presents a discontinuity between thin and thick disc stars around 9–10 Gyr. For thick disc stars, the correlation has a different ze...
Context. In the era of large spectroscopic surveys, massive databases of high-quality spectra couple...
Large-scale surveys open the possibility to investigate Galactic evolution both chemically and kinem...
We present the first large-scale study that demonstrates how ages can be determined for large sample...
Chemical abundance dating methods open new paths for temporal evolution studies of the Milky Way ste...
International audienceChemical abundance dating methods open new paths for temporal evolution studie...
International audienceContext. The abundance of α-elements relative to iron ([α/Fe]) is an important...
Context. The integrated light of distant star clusters and galaxies can yield information on the ste...
We analyze 494 main sequence turnoff and subgiant stars from the AMBRE:HARPS survey. These stars hav...
Stellar ages are a crucial component to studying the evolution of the Milky Way. Using Gaia DR2 dist...
Context. Solar twins are stars with similar stellar (surface) parameters to the Sun that can have a ...
International audienceContext. The last decade has seen a revolution in our knowledge of the Galaxy ...
With the detailed measurements available for our Galaxy, the Milky Way is a unique laboratory for th...
The age–metallicity relation (AMR) is a fundamental observational constraint for understanding how t...
Context. The chemical composition of stars is intimately linked to the formation and evolution of th...
Context. The last decade has seen a revolution in our knowledge of the Galaxy thanks to the Gaia and...
Context. In the era of large spectroscopic surveys, massive databases of high-quality spectra couple...
Large-scale surveys open the possibility to investigate Galactic evolution both chemically and kinem...
We present the first large-scale study that demonstrates how ages can be determined for large sample...
Chemical abundance dating methods open new paths for temporal evolution studies of the Milky Way ste...
International audienceChemical abundance dating methods open new paths for temporal evolution studie...
International audienceContext. The abundance of α-elements relative to iron ([α/Fe]) is an important...
Context. The integrated light of distant star clusters and galaxies can yield information on the ste...
We analyze 494 main sequence turnoff and subgiant stars from the AMBRE:HARPS survey. These stars hav...
Stellar ages are a crucial component to studying the evolution of the Milky Way. Using Gaia DR2 dist...
Context. Solar twins are stars with similar stellar (surface) parameters to the Sun that can have a ...
International audienceContext. The last decade has seen a revolution in our knowledge of the Galaxy ...
With the detailed measurements available for our Galaxy, the Milky Way is a unique laboratory for th...
The age–metallicity relation (AMR) is a fundamental observational constraint for understanding how t...
Context. The chemical composition of stars is intimately linked to the formation and evolution of th...
Context. The last decade has seen a revolution in our knowledge of the Galaxy thanks to the Gaia and...
Context. In the era of large spectroscopic surveys, massive databases of high-quality spectra couple...
Large-scale surveys open the possibility to investigate Galactic evolution both chemically and kinem...
We present the first large-scale study that demonstrates how ages can be determined for large sample...