Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li) 2.2 dex) and then the upper envelope of the lithium vs. metallicity distribution increases as we approach solar metallicity. Meteorites, which carry information about the chemical composition of the interstellar medium (ISM) at the solar system formation time, show a lithium abundance A(Li) 3.26 dex. This pattern reflects the Li enrichment history of the ISM during the Galaxy lifetime. After the initial Li production in big bang nucleosynthesis, the sources of the enrichment include asymptotic giant branch (AGB) stars, low-mass red giants, novae, type II supernovae, and Galactic cosmic rays. The total amount of enriched Li is sensitive to t...
International audienceAfter more than ten years and six data releases, the Gaia-ESO spectroscopic su...
Despite the recent availability of large samples of stars with high- precision Li abundances, there ...
Aims. We aim to constrain the mixing processes in low-mass stars by investigating the behaviour of t...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. The chemical evolution of lithium in the Milky Way represents a major problem in modern ast...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
International audienceContext. The chemical evolution of lithium in the Milky Way represents a major...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
International audienceAfter more than ten years and six data releases, the Gaia-ESO spectroscopic su...
Despite the recent availability of large samples of stars with high- precision Li abundances, there ...
Aims. We aim to constrain the mixing processes in low-mass stars by investigating the behaviour of t...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Lithium abundance in most of the warm metal-poor main sequence stars shows a constarnt plateau (A(Li...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. The chemical evolution of lithium in the Milky Way represents a major problem in modern ast...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. After more than 50 years, astronomical research still struggles to reconstruct the history ...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
International audienceContext. The chemical evolution of lithium in the Milky Way represents a major...
Context. Reconstructing the Galactic evolution of lithium (Li) is the main tool used to constrain th...
International audienceAfter more than ten years and six data releases, the Gaia-ESO spectroscopic su...
Despite the recent availability of large samples of stars with high- precision Li abundances, there ...
Aims. We aim to constrain the mixing processes in low-mass stars by investigating the behaviour of t...