Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or explosion simulations can scrutinize two aspects: (a) the conditions in the astrophysical production site and (b) the quality of the nuclear physics input utilized. We test the abundance features of r-process nucleosynthesis calculations for the dynamical ejecta of neutron star merger simulations based on three different nuclear mass models: The Finite Range Droplet Model (FRDM), the (quenched version of the) Extended Thomas Fermi Model with Strutinsky Integral (ETFSI-Q), and the Hartree-Fock-Bogoliubov (HFB) mass model. We make use of corresponding fission barrier heights and compare the impact of four different fission fragment distribution...
We review recent work examining the influence of fission in rapid neutron capture (r-process) nucleo...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
M. Eichler, A. Arcones, A. Kelic, O. Korobkin, K. Langanke, T. Marketin, G. Martinez-Pinedo, I. Pano...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
We have performed r-process calculations in neutron star mergers (NSM) and jets of magnetohydrodynam...
We have performed r-process calculations in neutron star mergers (NSM) and jets of magnetohydrodynam...
International audienceNeutron star (NS) merger ejecta offer viable sites for the production of heavy...
This data release contains nucleosynthesis predictions following Vassh et al. (2020) for the r-proce...
Fission plays a crucial role for the r-process nucleosynthesis in neutron star mergers. Due to the h...
International audienceNeutron star (NS) merger ejecta offer a viable site for the production of heav...
Fission plays a crucial role for the r-process nucleosynthesis in neutron star mergers. Due to the h...
We review recent work examining the influence of fission in rapid neutron capture (r-process) nucleo...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
Comparing observational abundance features with nucleosynthesis predictions of stellar evolution or ...
M. Eichler, A. Arcones, A. Kelic, O. Korobkin, K. Langanke, T. Marketin, G. Martinez-Pinedo, I. Pano...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
We have performed r-process calculations in neutron star mergers (NSM) and jets of magnetohydrodynam...
We have performed r-process calculations in neutron star mergers (NSM) and jets of magnetohydrodynam...
International audienceNeutron star (NS) merger ejecta offer viable sites for the production of heavy...
This data release contains nucleosynthesis predictions following Vassh et al. (2020) for the r-proce...
Fission plays a crucial role for the r-process nucleosynthesis in neutron star mergers. Due to the h...
International audienceNeutron star (NS) merger ejecta offer a viable site for the production of heav...
Fission plays a crucial role for the r-process nucleosynthesis in neutron star mergers. Due to the h...
We review recent work examining the influence of fission in rapid neutron capture (r-process) nucleo...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...