The kinematics of the most metal-poor stars provide a window into the early formation and accretion history of the Milky Way (MW). Here, we use five high-resolution cosmological zoom-in simulations (similar to 5 x 10(6) star particles) of MW-like galaxies taken from the NIHAO-UHD project, to investigate the origin of low-metallicity stars ([Fe/H] <= -2.5). The simulations show a prominent population of low-metallicity stars confined to the disc plane, as recently discovered in the MW. The ubiquity of this finding suggests that the MW is not unique in this respect. Independently of the accretion history, we find that greater than or similar to 90 per cent of the retrograde stars in this population are brought in during the initial build-up o...
We present a metallicity analysis of 83 late-type giants within the central 1 pc of the Milky Way. K...
Low-metallicity stars give rise to unique spectacular transients and are of immense interest for und...
International audienceWe analysed a set of very metal-poor stars, for which accurate chemical abunda...
International audienceThe kinematics of the most metal-poor stars provide a window into the early fo...
In hierarchical structure formation, metal-poor stars in and around the Milky Way (MW) originate pri...
Here we investigate the evolution of a Milky Way (MW) -like galaxy with the aim of predicting the pr...
Ultra metal-poor stars (UMPs, [Fe/H] 11 Gyr), observable UMPs must be low-mass stars, but the minimu...
By means of high-resolution cosmological hydrodynamical simulations of Milky Way (MW) like disc gala...
We study the stellar population history and chemical evolution of the Milky Way (MW) in a hierarchic...
The entire evolution of the Milky Way, including its mass-assembly and star-formation history, is im...
Using a cosmological hydrodynamical simulation of a galaxy of similar mass to the Large Magellanic C...
We use Gaia DR2 astrometric and photometric data, published radial velocities and MESA models to inf...
We present a metallicity analysis of 83 late-type giants within the central 1 pc of the Milky Way. K...
Low-metallicity stars give rise to unique spectacular transients and are of immense interest for und...
International audienceWe analysed a set of very metal-poor stars, for which accurate chemical abunda...
International audienceThe kinematics of the most metal-poor stars provide a window into the early fo...
In hierarchical structure formation, metal-poor stars in and around the Milky Way (MW) originate pri...
Here we investigate the evolution of a Milky Way (MW) -like galaxy with the aim of predicting the pr...
Ultra metal-poor stars (UMPs, [Fe/H] 11 Gyr), observable UMPs must be low-mass stars, but the minimu...
By means of high-resolution cosmological hydrodynamical simulations of Milky Way (MW) like disc gala...
We study the stellar population history and chemical evolution of the Milky Way (MW) in a hierarchic...
The entire evolution of the Milky Way, including its mass-assembly and star-formation history, is im...
Using a cosmological hydrodynamical simulation of a galaxy of similar mass to the Large Magellanic C...
We use Gaia DR2 astrometric and photometric data, published radial velocities and MESA models to inf...
We present a metallicity analysis of 83 late-type giants within the central 1 pc of the Milky Way. K...
Low-metallicity stars give rise to unique spectacular transients and are of immense interest for und...
International audienceWe analysed a set of very metal-poor stars, for which accurate chemical abunda...