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- W2036950057 startingPage "2441" @default.
- W2036950057 abstract "Cross sections were measured for elastic and inelastic scattering of 40.1-MeV $ensuremath{alpha}$ particles from $^{60}mathrm{Ni}$ over the range $ensuremath{theta}=153ensuremath{-}189ifmmode^circelsetextdegreefi{}$. The 180ifmmode^circelsetextdegreefi{} cross section for inelastic scattering from the ${2}^{+}$ excited state at 2.16 MeV was found to be more than an order of magnitude larger than that for the first excited ${2}^{+}$ state at 1.33 MeV and nearly an order of magnitude larger than that for the elastic scattering. The phase of the angular distribution for the 2.16-MeV level is opposite to that of the 1.33-MeV level, but is the same as the elastic scattering. The data are compared with predictions of compound nucleus and coupled-channel reaction theory. While the compound nucleus reaction mechanism does not account qualitatively for these data, the coupled-channel approach is much more successful and indicates that the absorption term in the optical model potential is determined in a very sensitive way by the backangle elastic and inelastic scattering.NUCLEAR REACTIONS $^{60}mathrm{Ni}(ensuremath{alpha}, {ensuremath{alpha}}^{ensuremath{'}})$, $E=40.1$ MeV; measured absolute $ensuremath{sigma}(ensuremath{theta})$, $ensuremath{theta}=153ensuremath{-}189ifmmode^circelsetextdegreefi{}$, coupled-channel analysis." @default.
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- W2036950057 date "1974-12-01" @default.
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- W2036950057 title "Unusual back-angle scattering and the significance of coupled channels in theNi60(α, α′)reactin atEα=40MeV" @default.
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- W2036950057 doi "https://doi.org/10.1103/physrevc.10.2441" @default.
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