paper

Nuclear masses near that influence -process abundances

arXiv:1411.3978

Abstract

Nuclear masses are one of the key ingredients of nuclear physics that go into astrophysical simulations of the process. Nuclear masses effect -process abundances by entering into calculations of Q-values, neutron capture rates, photo-dissociation rates, beta-decay rates, branching ratios and the properties of fission. Most of the thousands of short-lived neutron-rich nuclei which are believed to participate in the process lack any experimental verification, thus the identification of the most influential nuclei is of paramount importance. We have conducted mass sensitivity studies near the closed shell in the context of a main -process. Our studies take into account how an uncertainty in a single nuclear mass propagates to influence the relevant quantities of neighboring nuclei and finally to -process abundances. We identify influential nuclei in various astrophysical conditions using the FRDM mass model. We show that our conclusions regarding these key nuclei are still retained when a superposition of astrophysical trajectories is considered.

6 pages, 2 figures, presented at Nuclei In the Cosmos XIII, July 7-11 2014