Metal-poor stars are key to our understanding of the early stages of chemical evolution in the Universe. New multi-filter surveys, such as the Southern Photometric Local Universe Survey (S-PLUS), are greatly advancing our ability to select low-metallicity stars. In this work, we analyse the chemodynamical properties and ages of 522 metal-poor candidates selected from the S-PLUS data release 3. About 92% of these stars were confirmed to be metal-poor ([Fe/H] ≤−1) based on previous medium-resolution spectroscopy. We calculated the dynamical properties of a subsample containing 241 stars, using the astrometry from Gaia Data Release 3. Stellar ages are estimated by a Bayesian isochronal method formalized in this work. We analyse the metallicity...
International audienceMetal-poor stars trace the earliest phases in the chemical enrichment of the U...
A chemo-dynamical analysis of 115 metal-poor candidate stars selected from the narrowband Pristine p...
With the aim of probing the properties of the bright end of the Pristine survey and its effectivenes...
Metal-poor stars are key to our understanding of the early stages of chemical evolution in the Unive...
Context. Metal-poor stars are key for studying the formation and evolution of the Galaxy. Evidence o...
Metal-poor stars are key to our understanding of the early stages of chemical evolution in the Unive...
International audienceThis work presents the medium-resolution (R ~ 1500) spectroscopic follow-up of...
Context. Very metal-poor halo stars are the best candidates for being among the oldest objects in ou...
Context. The study of the oldest and most metal-poor stars in our Galaxy promotes our understanding ...
We study the age and metallicity distribution function (MDF) of metal-poor stars in the Milky Way ha...
An investigation of 253 very metal-poor stars ([Fe/H] < -1.5) from Barklem (2005) was done to deter...
International audienceContext. Very metal-poor halo stars are the best candidates for being among th...
International audienceMetal-poor stars trace the earliest phases in the chemical enrichment of the U...
A chemo-dynamical analysis of 115 metal-poor candidate stars selected from the narrowband Pristine p...
With the aim of probing the properties of the bright end of the Pristine survey and its effectivenes...
Metal-poor stars are key to our understanding of the early stages of chemical evolution in the Unive...
Context. Metal-poor stars are key for studying the formation and evolution of the Galaxy. Evidence o...
Metal-poor stars are key to our understanding of the early stages of chemical evolution in the Unive...
International audienceThis work presents the medium-resolution (R ~ 1500) spectroscopic follow-up of...
Context. Very metal-poor halo stars are the best candidates for being among the oldest objects in ou...
Context. The study of the oldest and most metal-poor stars in our Galaxy promotes our understanding ...
We study the age and metallicity distribution function (MDF) of metal-poor stars in the Milky Way ha...
An investigation of 253 very metal-poor stars ([Fe/H] < -1.5) from Barklem (2005) was done to deter...
International audienceContext. Very metal-poor halo stars are the best candidates for being among th...
International audienceMetal-poor stars trace the earliest phases in the chemical enrichment of the U...
A chemo-dynamical analysis of 115 metal-poor candidate stars selected from the narrowband Pristine p...
With the aim of probing the properties of the bright end of the Pristine survey and its effectivenes...