Star-to-star dispersion of r-process elements has been observed in a significant number of old, metal-poor globular clusters (GCs). We investigate early-time neutron-star mergers as the mechanism for this enrichment. Through both numerical modeling and analytical arguments, we show that neutron-star mergers cannot be induced through dynamical interactions early in the history of the cluster, even when the most liberal assumptions about neutron-star segregation are assumed. Therefore, if neutron-star mergers are the primary mechanism for r-process dispersion in GCs, they likely result from the evolution of isolated, primordial binaries in the clusters. Through population modeling of double neutron-star progenitors, we find that most enrichme...
The first neutron star (NS) merger observed by advanced LIGO and Virgo, GW170817, and its fireworks ...
Astrophysical site(s) of rapid neutron-capture process (r-process) is (are) not identified yet. Alth...
The astrophysical nature of r-process sites is a long-standing mystery and many probable sources hav...
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 origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
Neutron stars are amongst the most compact and exotic objects in the universe. When born in pairs, t...
Abstract Neutron star mergers (NSMs) are promising astrophysical sites for the rapid...
Comparing Galactic chemical evolution models to the observed elemental abundances in the Milky Way, ...
We study galactic enrichment with rapid neutron capture (r-process) elements in cosmological, magnet...
The astrophysical nature of r-process sites is a long standing mystery and many probable sources hav...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
High-resolution spectroscopy of stars on the red giant branch (RGB) of the globular cluster M15 has ...
We report here on two complementary population synthesis studies which relate directly to the format...
The first neutron star (NS) merger observed by advanced LIGO and Virgo, GW170817, and its fireworks ...
Astrophysical site(s) of rapid neutron-capture process (r-process) is (are) not identified yet. Alth...
The astrophysical nature of r-process sites is a long-standing mystery and many probable sources hav...
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 origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
Neutron stars are amongst the most compact and exotic objects in the universe. When born in pairs, t...
Abstract Neutron star mergers (NSMs) are promising astrophysical sites for the rapid...
Comparing Galactic chemical evolution models to the observed elemental abundances in the Milky Way, ...
We study galactic enrichment with rapid neutron capture (r-process) elements in cosmological, magnet...
The astrophysical nature of r-process sites is a long standing mystery and many probable sources hav...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
High-resolution spectroscopy of stars on the red giant branch (RGB) of the globular cluster M15 has ...
We report here on two complementary population synthesis studies which relate directly to the format...
The first neutron star (NS) merger observed by advanced LIGO and Virgo, GW170817, and its fireworks ...
Astrophysical site(s) of rapid neutron-capture process (r-process) is (are) not identified yet. Alth...
The astrophysical nature of r-process sites is a long-standing mystery and many probable sources hav...