International audienceContext. The formation of the Galactic disc is an enthusiastically debated issue. Numerous studies and models seek to identify the dominant physical process(es) that shaped its observed properties; for example, satellite accretion, starburst, quenching, gas infall, and stellar radial migration.Aims. Taking advantage of the improved coverage of the inner Milky Way provided by the SDSS DR16 APOGEE catalogue and of the ages published in the APOGEE-AstroNN Value Added Catalogue (VAC), we examined the radial evolution of the chemical and age properties of the Galactic stellar disc with the aim of better constraining its formation.Methods. Using a sample of 199 307 giant stars with precise APOGEE abundances and APOGEE-AstroN...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We present new maps of the Milky Way disk showing the distribution of metallicity ([Fe/H]), alpha-el...
International audienceContext. The formation of the Galactic disc is an enthusiastically debated iss...
Context. Thanks to ongoing efforts to compute accurate stellar ages, we are able to characterise sta...
The measurement of the structure of stellar populations in the Milky Way disc places fundamental con...
International audienceWe present new maps of the Milky Way disk showing the distribution of metallic...
International audienceContext. Thanks to ongoing efforts to compute accurate stellar ages, we are ab...
Aims. We study the effects of the cosmological assembly history on the chemical and dynamical proper...
Context. Understanding the history and the evolution of the Milky Way is one of the main goals of mo...
International audienceContext. We study the role of radial migration of stars on the chemical evolut...
We develop a chemical evolution model to study the star formation history of the Milky Way. Our mode...
5noWe study the evolution of Milky Way thick and thin discs in the light of the most recent observat...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We present new maps of the Milky Way disk showing the distribution of metallicity ([Fe/H]), alpha-el...
International audienceContext. The formation of the Galactic disc is an enthusiastically debated iss...
Context. Thanks to ongoing efforts to compute accurate stellar ages, we are able to characterise sta...
The measurement of the structure of stellar populations in the Milky Way disc places fundamental con...
International audienceWe present new maps of the Milky Way disk showing the distribution of metallic...
International audienceContext. Thanks to ongoing efforts to compute accurate stellar ages, we are ab...
Aims. We study the effects of the cosmological assembly history on the chemical and dynamical proper...
Context. Understanding the history and the evolution of the Milky Way is one of the main goals of mo...
International audienceContext. We study the role of radial migration of stars on the chemical evolut...
We develop a chemical evolution model to study the star formation history of the Milky Way. Our mode...
5noWe study the evolution of Milky Way thick and thin discs in the light of the most recent observat...
We present a new approach for studying the chemodynamical evolution of the Milky Way, which combines...
Stellar radial migration plays an important role in reshaping a galaxy's structure and the radial di...
We present new maps of the Milky Way disk showing the distribution of metallicity ([Fe/H]), alpha-el...