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- W3143297231 abstract "The $ensuremath{gamma}$-ray angular distributions following the direct reaction ${mathrm{C}}^{12}(p, {p}^{ensuremath{'}}{ensuremath{gamma}}_{4.43phantom{rule{0ex}{0ex}}mathrm{M}mathrm{e}mathrm{V}}){mathrm{C}}^{12}$ have been calculated for the cases of single-particle excitation and collective excitation using Glendenning's optical potential and the surface interaction model. In the case of particle excitation, the effective two-body potential has been assumed to have the form ${V}_{d}(|{mathrm{r}}_{p}ensuremath{-}{mathrm{r}}_{n}|)[{a}_{0}+{a}_{1}ensuremath{sigma}(p)ifmmodecdotelsetextperiodcenteredfi{}ensuremath{sigma}(n)]$. Comparison with experiments at this laboratory for incident proton energies ${E}_{p}=6.69, 8.46, 8.71, mathrm{and} 9.72$ MeV shows remarkably good fits for $frac{{a}_{1}}{{a}_{0}}=ifmmodepmelsetextpmfi{}0.67$. For the case of collective excitation, the agreement has been found to be poor. The plane-wave Born approximation for the incoming and outgoing waves does not yield satisfactory results for either mechanism." @default.
- W3143297231 created "2021-04-13" @default.
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- W3143297231 date "1962-09-01" @default.
- W3143297231 modified "2023-10-16" @default.
- W3143297231 title "Angular Distribution ofγRadiation Following Direct Nuclear Reaction" @default.
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- W3143297231 doi "https://doi.org/10.1103/physrev.127.1693" @default.
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