New s-process path and its implication to 187Re-187Os nucleo-cosmochronometer
Abstract
We study a new s-process path through an isomer of Re to improve a Re-Os nucleo-cosmochronometer. The nucleus Re is produced by this new path of Re(n,)Re(n,)Re. We measure a ratio of neutron capture cross-sections for the Re(n,)Re and Re(n,)Re 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 = 0.54 0.11%. From this ratio we estimate the ratio of Maxwellian averaged cross sections in a typical s-process environment at = 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 =30 keV is estimated to be = 1.3 0.8%. We calculate the s-process contribution from the new path in a steady-flow model. The additional abundance of Re through this path is estimated to be = 0.56 0.35% relative to the abundance of Os. This additional increase of Re does not make any remarkable change in the Re-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.
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