English

New s-process path and its implication to 187Re-187Os nucleo-cosmochronometer

Astrophysics 2009-11-10 v1

Abstract

We study a new s-process path through an isomer of 186^{186}Re to improve a 187^{187}Re-187^{187}Os nucleo-cosmochronometer. The nucleus 187^{187}Re is produced by this new path of 185^{185}Re(n,γ\gamma)186^{186}Rem^m(n,γ\gamma)187^{187}Re. We measure a ratio of neutron capture cross-sections for the 185^{185}Re(n,γ\gamma)186^{186}Rem^m and 185^{185}Re(n,γ\gamma)186^{186}Regs^{gs} reactions at thermal neutron energy because the ratio with the experimental uncertainty has not been reported. Using an activation method with reactor neutrons, we obtain the ratio of RthR_{th} = 0.54 ±\pm 0.11%. From this ratio we estimate the ratio of Maxwellian averaged cross sections in a typical s-process environment at kTkT = 30 keV with a help of the temperature dependence given in a statistical-model calculation because the energy dependence of the isomer/ground ratio is smaller than the absolute neutron capture cross-section. The ratio at kTkT=30 keV is estimated to be RstR_{st} = 1.3 ±\pm 0.8%. We calculate the s-process contribution from the new path in a steady-flow model. The additional abundance of 187^{187}Re through this path is estimated to be NsN_{s} = 0.56 ±\pm 0.35% relative to the abundance of 186^{186}Os. This additional increase of 187^{187}Re does not make any remarkable change in the 187^{187}Re-187^{187}Os chronometer for an age estimate of a primitive meteorite, which has recently been found to be affected strongly by a single supernova r-process episode.

Keywords

Cite

@article{arxiv.astro-ph/0503642,
  title  = {New s-process path and its implication to 187Re-187Os nucleo-cosmochronometer},
  author = {T. Hayakawa and T. Shizuma and T. Kajino and S. Chiba and N. Shinohara and T. Nakagawa and T. Arima},
  journal= {arXiv preprint arXiv:astro-ph/0503642},
  year   = {2009}
}

Comments

Accepted in Astrophysical Journal, 10 pages, 6 figures

R2 v1 2026-07-22T08:50:12.733Z