Production of the entire range of r-process nuclides by black hole accretion disc outflows from neutron star mergers
Meng-Ru Wu, Rodrigo Fern\'andez, Gabriel Mart\'inez-Pinedo, Brian D., Metzger

TL;DR
This study models nucleosynthesis in black hole accretion disc outflows from neutron star mergers, showing they produce a robust r-process element pattern, especially around the second peak, and are likely a major source of galactic r-process elements.
Contribution
It provides the first detailed nucleosynthesis calculations for black hole accretion disc outflows, highlighting their significant role in r-process element production in mergers.
Findings
Outflows produce a robust abundance pattern around the second r-process peak.
Disc outflows can reach the third peak, depending on model parameters.
An abundance spike at A=132 is observed, influenced by disc convection and nuclear heating.
Abstract
We consider -process nucleosynthesis in outflows from black hole accretion discs formed in double neutron star and neutron star -- black hole mergers. These outflows, powered by angular momentum transport processes and nuclear recombination, represent an important -- and in some cases dominant -- contribution to the total mass ejected by the merger. Here we calculate the nucleosynthesis yields from disc outflows using thermodynamic trajectories from hydrodynamic simulations, coupled to a nuclear reaction network. We find that outflows produce a robust abundance pattern around the second -process peak (mass number ), independent of model parameters, with significant production of nuclei. This implies that dynamical ejecta with high electron fraction may not be required to explain the observed abundances of -process elements in metal poor stars. Disc…
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