We study the post-merger mass ejection of low-mass binary neutron stars (NSs) with the system mass of $2.5\, M_\odot$, and subsequent nucleosynthesis by performing general-relativistic, neutrino-radiation viscous-hydrodynamics simulations in axial symmetry. We find that the merger remnants are long-lived massive NSs surviving more than several seconds, irrespective of the nuclear equations of state (EOSs) adopted. The ejecta masses of our fiducial models are $\sim 0.06$-$0.1\, M_\odot$ (depending on the EOS), being $\sim 30\%$ of the initial disk masses ($\sim 0.15$-$0.3\, M_\odot$). Post-processing nucleosynthesis calculations indicate that the ejecta is composed mainly of light $r$-process nuclei with small amounts of lanthanides (mass fr...
Ejected material from neutron star mergers gives rise to electromagnetic emission powered by radioac...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We study the long-term evolution of ejecta formed in a binary neutron star (BNS) merger that results...
We present fully general-relativistic simulations of binary neutron star mergers with a temperature ...
The recent detection of gravitational waves and electromagnetic signals from the merger of a binary ...
When binary systems of neutron stars merge, a very small fraction of their rest mass is ejected, eit...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
We perform a general-relativistic neutrino-radiation magnetohydrodynamicsimulation of a one second-l...
We examine nucleosynthesis in the ejecta of black hole-neutron star mergers based on the results of ...
We investigate the explosion of low-mass neutron stars through Newtonian hydrodynamic simulations. W...
Neutron stars are extremely dense stellar corpses which sometimes exist in orbiting pairs known as b...
Ejected material from neutron star mergers gives rise to electromagnetic emission powered by radioac...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...
We investigate $r$-process nucleosynthesis and kilonova emission resulting from binary neutron star ...
We perform long-term general relativistic neutrino radiation hydrodynamics simulations (in axisymmet...
We study the long-term evolution of ejecta formed in a binary neutron star (BNS) merger that results...
We present fully general-relativistic simulations of binary neutron star mergers with a temperature ...
The recent detection of gravitational waves and electromagnetic signals from the merger of a binary ...
When binary systems of neutron stars merge, a very small fraction of their rest mass is ejected, eit...
The majority of existing results for the kilonova (or macronova) emission from material ejected duri...
We investigate the ejecta from black hole—neutron star mergers by modeling the formation and interac...
We perform a general-relativistic neutrino-radiation magnetohydrodynamicsimulation of a one second-l...
We examine nucleosynthesis in the ejecta of black hole-neutron star mergers based on the results of ...
We investigate the explosion of low-mass neutron stars through Newtonian hydrodynamic simulations. W...
Neutron stars are extremely dense stellar corpses which sometimes exist in orbiting pairs known as b...
Ejected material from neutron star mergers gives rise to electromagnetic emission powered by radioac...
The rapid neutron-capture process, or r-process, is known to be of fundamental importance for explai...
The source of the gravitational-wave (GW) signal GW170817, very likely a binary neutron star merger,...