Published September 23, 2011 | Version v1
Journal article

Explosive nucleosynthesis in core-collapse supernovae

  • 1. Department of Physics, University of Basel, Klingelbergstrasse 82, 4056, Basel (Switzerland)

Description

The specific mechanism and astrophysical site for the production of half of the elements heavier than iron via rapid neutron capture (r-process) remains to be found. In order to reproduce the abundances of the solar system and of the old halo stars, at least two components are required: the heavy r-process nuclei (A > 130) and the weak r-process which correspond to the lighter heavy nuclei (A < 130). In this work, we present nucleosynthesis studies based on trajectories of hydrodynamical simulations for core-collapse supernovae and their subsequent neutrino-driven winds. We show that the weak r-process elements can be produced in neutrino-driven winds and we relate their abundances to the neutrino emission from the nascent neutron star. Based on the latest hydrodynamical simulations, heavy r-process elements cannot be synthesized in the neutrino-driven winds. However, by artificially increasing the wind entropy, elements up to A = 195 can be made. In this way one can mimic the general behavior of an ejecta where the r-process occurs. We use this to study the impact of the nuclear physics input (nuclear masses, neutron capture cross sections, and beta-delayed neutron emission) and of the long-time dynamical evolution on the final abundances.

Availability note (English)

Available from http://dx.doi.org/10.1088/1742-6596/312/4/042005

Additional details

Publishing Information

Journal Title
Journal of Physics. Conference Series (Online)
Journal Volume
312
Journal Issue
4
Journal Page Range
[10 p.]
ISSN
1742-6596

Conference

Title
International nuclear physics conference 2010
Acronym
INPC2010
Dates
4-9 Jul 2010
Place
Vancouver, BC (Canada)