We studied α cluster states in 26Mg via the 22Ne(6Li,dγ)26Mg reaction in inverse kinematics at an energy of 7 MeV/nucleon. States between Ex = 4 - 12 MeV in 26Mg were populated and relative α spectroscopic factors were determined. Some of these states correspond to resonances in the Gamow window of the 22Ne(α,n)25Mg reaction, which is one of the main neutron sources in the astrophysical s-process. We show that α-cluster strength of the states analyzed in this work have critical impact on s-process abundances. Using our new 22Ne(α,n)25Mg and 22Ne(α,γ)26Mg reaction rates, we performed new s-process calculations for massive stars and Asymptotic Giant Branch stars and compared the resulting yields with the yields obtained using other 22Ne+α rates from the literature. We observe an impact on the s-process abundances up to a factor of three for intermediate-mass AGB stars and up to a factor of ten for massive stars. Additionally, states in 25Mg at Ex< 5 MeV are identified via the 22Ne(6Li,t)25Mg reaction for the first time. We present the (6Li, t) spectroscopic factors of these states and note similarities to the (d,p) reaction in terms of reaction selectivity.
@article{arxiv.2107.00131,
title = {Study of ($^6$Li, $d$) and ($^6$Li, $t$) reactions on $^{22}$Ne and implications for $s$-process nucleosynthesis},
author = {S. Ota and G. Christian and W. N. Catford and G. Lotay and M. Pignatari and U. Battino and E. A. Bennett and S. Dede and D. T. Doherty and S. Hallam and F. Herwig and J. Hooker and C. Hunt and H. Jayatissa and A. Matta and M. Mouhkaddam and E. Rao and G. V. Rogachev and A. Saastamoinen and D. Scriven and J. A. Tostevin and S. Upadhyayula and R. Wilkinson},
journal= {arXiv preprint arXiv:2107.00131},
year = {2021}
}