Context. The astrophysical r-process site where about half of the elements, heavier than iron are produced, has been a puzzle for several decades. Here we discuss the role of one of the leading ideas – neutron star mergers (NSMs) – in the light of the first direct detection of such an event in both gravitational (GW) and electromagnetic (EM) waves. Aims. Our aim is to understand the implications of the first GW/EM observations of a NSM for cosmic nucleosynthesis. Methods. We analyse bolometric and NIR lightcurves of the first detected double NSM and compare them to nuclear reaction network-based macronova models. Results. The slope of the bolometric lightcurve is consistent with the radioactive decay of neutron star ejecta with Ye ≲ 0.3 (bu...
The merger of two neutron stars or of a neutron star and a black hole often result in the ejection o...
The rapid neutron capture nucleosynthesis (r-process) is responsible for producing about half of the...
About half of the heavy elements in our Universe are synthesized by one process, the rapid neutron c...
Context. The astrophysical r-process site where about half of the elements, heavier than iron are pr...
The first neutron star (NS) merger observed by advanced LIGO and Virgo, GW170817, and its fireworks ...
The existence of neutron star mergers has been supported since the discovery of the binary pulsar an...
The first neutron star-neutron star (NS-NS) merger was discovered on August 17, 2017 through gravita...
The first neutron star-neutron star (NS-NS) merger was discovered on August 17, 2017 through gravita...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
Neutron stars are amongst the most compact and exotic objects in the universe. When born in pairs, t...
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 the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
The merger of two neutron stars or of a neutron star and a black hole often result in the ejection o...
The rapid neutron capture nucleosynthesis (r-process) is responsible for producing about half of the...
About half of the heavy elements in our Universe are synthesized by one process, the rapid neutron c...
Context. The astrophysical r-process site where about half of the elements, heavier than iron are pr...
The first neutron star (NS) merger observed by advanced LIGO and Virgo, GW170817, and its fireworks ...
The existence of neutron star mergers has been supported since the discovery of the binary pulsar an...
The first neutron star-neutron star (NS-NS) merger was discovered on August 17, 2017 through gravita...
The first neutron star-neutron star (NS-NS) merger was discovered on August 17, 2017 through gravita...
The origin of r-process elements remains unidentified and still puzzles us. The recent discovery of ...
The nucleosynthetic site of the rapid (r) neutron-capture process is currently being debated. The di...
Neutron stars are amongst the most compact and exotic objects in the universe. When born in pairs, t...
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 the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
We report the discovery and monitoring of the near-infrared counterpart (AT2017gfo) of a binary neut...
The merger of two neutron stars or of a neutron star and a black hole often result in the ejection o...
The rapid neutron capture nucleosynthesis (r-process) is responsible for producing about half of the...
About half of the heavy elements in our Universe are synthesized by one process, the rapid neutron c...