English

Effects of nuclear cross sections on $^{19}$F nucleosynthesis at low metallicities

Solar and Stellar Astrophysics 2014-10-15 v1

Abstract

The origin of fluorine is a longstanding problem in nuclear astrophysics. It is widely recognized that Asymptotic Giant Branch (AGB) stars are among the most important contributors to the Galactic fluorine production. In general, extant nucleosynthesis models overestimate the fluorine production by AGB stars with respect to observations. In this paper we review the relevant nuclear reaction rates involved in the fluorine production/destruction. We perform this analysis on a model with initial mass M=2 M_\odot and Z=0.001. We found that the major uncertainties are due to the 13^{13}C(α\alpha,n)16^{16}O, the 19^{19}F(α\alpha,p)22^{22}Ne and the 14^{14}N(p,γ\gamma)15^{15}O reactions. A change of the corresponding reaction rates within the present experimental uncertainties implies surface 19^{19}F variations at the AGB tip lower than 10\%. For some α\alpha capture reactions, however, larger variations in the rates of those processes cannot be excluded. Thus, we explore the effects of the variation of some α\alpha capture rates well beyond the current published uncertainties. The largest 19^{19}F variations are obtained by varying the 15^{15}N(α\alpha,γ\gamma)19^{19}F and the 19^{19}F(α\alpha,p)22^{22}Ne reactions. The analysis of some α\alpha capture processes assuming a wider uncertainty range determines 19^{19}F abundances in better agreement with recent spectroscopic fluorine measurements at low metallicity. In the framework of the latter scenario the 15^{15}N(α\alpha,γ\gamma)19^{19}F and the 19^{19}F(α\alpha,p)22^{22}Ne reactions show the largest effects on fluorine nucleosynthesis. The presence of poorly known low energy resonances make such a scenario, even if unlikely, possible. We plan to directly measure these resonances.

Keywords

Cite

@article{arxiv.1408.2986,
  title  = {Effects of nuclear cross sections on $^{19}$F nucleosynthesis at low metallicities},
  author = {S. Cristallo and A. Di Leva and G. Imbriani and L. Piersanti and C. Abia and L. Gialanella and O. Straniero},
  journal= {arXiv preprint arXiv:1408.2986},
  year   = {2014}
}

Comments

9 pages, 1 figure Accepted for publication on Astronomy & Astrophysics