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- W2262382709 startingPage "851" @default.
- W2262382709 abstract "$^{12}mathrm{C}$ + $^{24}mathrm{Mg}$ elastic scattering angular distributions have been measured at 12 bombarding energies over a range $20 mathrm{MeV}ensuremath{le}{E}_{mathrm{lab}}ensuremath{le}36 mathrm{MeV}$. The elastic $S$ matrix elements were parametrized in the framework of a complex Woods-Saxon potential. The measured angular distributions exhibit some irregular structure at surprisingly low energies---and no optical potential has been found to reproduce this low energy structure. Three surface-transparent optical potentials (one of which has energy-independent well depths) have been found to give a good overall account of the data. All three of these potentials predict essentially identical cross sections for angles ensuremath{lesssim} 120ifmmode^circelsetextdegreefi{}; additionally, they predict strong but strikingly different oscillations in the 180ifmmode^circelsetextdegreefi{} elastic scattering excitation function.NUCLEAR REACTIONS $^{24}mathrm{Mg}$($^{12}mathrm{C}$, $^{12}mathrm{C}$)$^{24}mathrm{Mg}$, measured $ensuremath{sigma}(E,ensuremath{varphi})$ $E=20ensuremath{-}36$ MeV; deduced optical model parameters." @default.
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- W2262382709 date "1979-08-01" @default.
- W2262382709 modified "2023-09-25" @default.
- W2262382709 title "C12+Mg24elastic scattering" @default.
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- W2262382709 doi "https://doi.org/10.1103/physrevc.20.851" @default.
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