Abstract

We have investigated the $^{70}\mathrm{Zn}$(p,t${)}^{68}$Zn reaction using a beam energy of 35 MeV. Angular distributions were extracted for 18 levels up to 4.25 MeV excitation in $^{68}\mathrm{Zn}$. Distorted-wave Born-approximation calculations have been performed and compared to each angular distribution. Because the distorted-wave Born-approximation angular distributions to the lowest ${2}^{+}$, ${3}^{\mathrm{\ensuremath{-}}}$, and ${4}^{+}$ states in $^{68}\mathrm{Zn}$ are found to be a poor representation of the data, we have also performed coupled-channels Born-approximation calculations for the $^{70}\mathrm{Zn}$(p,t) reaction leading to these states.

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