International audienceRecent progress of nucleosynthesis work as well as the discovery of a kilonova associated with the gravitational-wave source GW170817 indicates that neutron star mergers (NSM) can be a site of the r-process. Several studies of galactic chemical evolution, however, have pointed out inconsistencies between this idea and the observed stellar abundance signatures in the Milky Way: (a) the presence of Eu at low (halo) metallicity and (b) the descending trend of Eu/Fe at high (disc) metallicity. In this study, we explore the galactic chemical evolution of the Milky Way's halo, disc and satellite dwarf galaxies. Particular attention is payed to the forms of delay-time distributions for both type Ia supernovae (SN Ia) and NSMs...
Recent optical/IR/UV observations and Gamma-ray burst rate determinations have led to significant pr...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
International audienceRecent progress of nucleosynthesis work as well as the discovery of a kilonova...
Astrophysical site(s) of rapid neutron-capture process (r-process) is (are) not identified yet. Alth...
Probing the origin of r-process elements in the universe represents a multidisciplinary challenge. W...
11siProbing the origin of r-process elements in the universe represents a multidisciplinary challeng...
International audienceBinary neutron star mergers (BNSMs) are currently the most promising source of...
International audienceRecent hydrodynamical and nucleosynthesis studies have suggested binary merger...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
Abstract The astrophysical origins of r-process elements remain elusive. Neutron star...
Context. The dominant astrophysical production site of the r-process elements has not yet been unamb...
Context. The dominant astrophysical production site of the r-process elements has not yet been unamb...
Recent optical/IR/UV observations and Gamma-ray burst rate determinations have led to significant pr...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
International audienceRecent progress of nucleosynthesis work as well as the discovery of a kilonova...
Astrophysical site(s) of rapid neutron-capture process (r-process) is (are) not identified yet. Alth...
Probing the origin of r-process elements in the universe represents a multidisciplinary challenge. W...
11siProbing the origin of r-process elements in the universe represents a multidisciplinary challeng...
International audienceBinary neutron star mergers (BNSMs) are currently the most promising source of...
International audienceRecent hydrodynamical and nucleosynthesis studies have suggested binary merger...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
Abstract The astrophysical origins of r-process elements remain elusive. Neutron star...
Context. The dominant astrophysical production site of the r-process elements has not yet been unamb...
Context. The dominant astrophysical production site of the r-process elements has not yet been unamb...
Recent optical/IR/UV observations and Gamma-ray burst rate determinations have led to significant pr...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...