We investigate the nucleosynthesis of heavy elements in the winds ejected by accretion discs formed in neutron star mergers. We compute the element formation in disc outflows from hypermassive neutron star (HMNS) remnants of variable lifetime, including the effect of angular momentum transport in the disc evolution. We employ long-term axisymmetric hydrodynamic disc simulations to model the ejecta, and compute r-process nucleosynthesis with tracer particles using a nuclear reaction network containing ∼8000 species. We find that the previously known strong correlation between HMNS lifetime, ejected mass and average electron fraction in the outflow is directly related to the amount of neutrino irradiation on the disc, which dominates mass eje...
We study the r-process nucleosynthesis in neutrino-driven winds of gravitational core collapse SNeII...
We perform a comparative analysis of nucleosynthesis yields from binary neutron star (BNS) mergers, ...
Radioactive energies from unstable nuclei made in the ejecta of neutron star mergers play principal ...
We investigate the nucleosynthesis of heavy elements in the winds ejected by accretion discs formed ...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
During the merger of a black hole and a neutron star, baryonic mass can become unbound from the syst...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
Neutrino-driven wind from young hot neutron star, which is formed by supernova explosion, is the mos...
We present fully general-relativistic simulations of binary neutron star mergers with a temperature ...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
Baryonic outflows from proto-neutron stars formed in core-collapse supernova explosions are one of t...
We study the post-merger mass ejection of low-mass binary neutron stars (NSs) with the system mass o...
We study the r-process nucleosynthesis in neutrino-driven winds of gravitational core collapse SNeII...
We perform a comparative analysis of nucleosynthesis yields from binary neutron star (BNS) mergers, ...
Radioactive energies from unstable nuclei made in the ejecta of neutron star mergers play principal ...
We investigate the nucleosynthesis of heavy elements in the winds ejected by accretion discs formed ...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
During the merger of a black hole and a neutron star, baryonic mass can become unbound from the syst...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
Neutrino-driven wind from young hot neutron star, which is formed by supernova explosion, is the mos...
We present fully general-relativistic simulations of binary neutron star mergers with a temperature ...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
Baryonic outflows from proto-neutron stars formed in core-collapse supernova explosions are one of t...
We study the post-merger mass ejection of low-mass binary neutron stars (NSs) with the system mass o...
We study the r-process nucleosynthesis in neutrino-driven winds of gravitational core collapse SNeII...
We perform a comparative analysis of nucleosynthesis yields from binary neutron star (BNS) mergers, ...
Radioactive energies from unstable nuclei made in the ejecta of neutron star mergers play principal ...