4noThe merging of two neutron stars (MNS) is thought to be the source of short gamma-ray bursts (SGRB) and gravitational wave transients, as well as the main production site of rprocess elements like Eu. We have derived a new delay time distribution (DTD) for MNS from theoretical considerations and we have tested it against (i) the SGRB redshift distribution and (ii) the Galactic evolution of Eu and Fe, in particular the [Eu/Fe] versus [Fe/H] relation. For comparison, we also tested other DTDs, as proposed in the literature. To address the first item, we have convolved the DTD with the cosmic star formation rate, while for the second we have employed a detailed chemical evolution model of the Milky Way. We have also varied the DTD of Type I...
Short-hard gamma-ray bursts (SHBs) may arise from gravitational wave (GW) driven mergers of double n...
Context. The mergers of neutron stars (NSs) and white dwarfs (WDs) could give rise to explosive tran...
International audienceBinary neutron star mergers (BNSMs) are currently the most promising source of...
3noThe merging rate of double neutron stars (DNS) has a great impact on many astrophysical issues, i...
3noWe study the evolution of the [Eu/Fe] ratio in the Galactic halo by means of a stochastic chemica...
The delay time distribution of neutron star mergers provides critical insights into binary evolution...
We compute rates of merging neutron stars (MNS) in different galaxies, as well as the cosmic MNS rat...
To investigate the temporal evolution of binary populations, in general, and double compact-star bin...
© 2019. The American Astronomical Society. All rights reserved. We investigate the ability of curren...
International audienceRecent progress of nucleosynthesis work as well as the discovery of a kilonova...
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...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
9siWe study the evolution of europium (Eu) and barium (Ba) abundances in Local Group dwarf spheroida...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
Short-hard gamma-ray bursts (SHBs) may arise from gravitational wave (GW) driven mergers of double n...
Context. The mergers of neutron stars (NSs) and white dwarfs (WDs) could give rise to explosive tran...
International audienceBinary neutron star mergers (BNSMs) are currently the most promising source of...
3noThe merging rate of double neutron stars (DNS) has a great impact on many astrophysical issues, i...
3noWe study the evolution of the [Eu/Fe] ratio in the Galactic halo by means of a stochastic chemica...
The delay time distribution of neutron star mergers provides critical insights into binary evolution...
We compute rates of merging neutron stars (MNS) in different galaxies, as well as the cosmic MNS rat...
To investigate the temporal evolution of binary populations, in general, and double compact-star bin...
© 2019. The American Astronomical Society. All rights reserved. We investigate the ability of curren...
International audienceRecent progress of nucleosynthesis work as well as the discovery of a kilonova...
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...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
9siWe study the evolution of europium (Eu) and barium (Ba) abundances in Local Group dwarf spheroida...
The astrophysical origins of r-process elements remain elusive. Neutron star mergers (NSMs) and spec...
Short-hard gamma-ray bursts (SHBs) may arise from gravitational wave (GW) driven mergers of double n...
Context. The mergers of neutron stars (NSs) and white dwarfs (WDs) could give rise to explosive tran...
International audienceBinary neutron star mergers (BNSMs) are currently the most promising source of...