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- W2065468462 startingPage "B311" @default.
- W2065468462 abstract "The knockout amplitude, which is present with the stripping amplitude in a properly antisymmetrized formulation of the ($d,p$) stripping reaction, is computed for the ${mathrm{C}}^{12}(d,p){mathrm{C}}^{13}$ and ${mathrm{S}}^{32}(d,p){mathrm{S}}^{33}$ reactions. It is found to be much smaller than previous rough estimates had indicated and it is argued that this is a general occurrence. The calculation uses the distorted-wave Born approximation with a zero-range perturbation interaction, although the deuteron is approximated by a Hulth'en wave function for the computation of the knockout amplitude. The stripping-forbidden ${mathrm{B}}^{10}(d,p){mathrm{B}}^{11*}$(2.14 MeV) reaction is computed assuming it to be a pure knockout process. Poor agreement with the experimental data is obtained in forward directions. It is concluded that knockout cannot be the sole reaction mechanism." @default.
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- W2065468462 date "1965-10-25" @default.
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- W2065468462 title "Coherent Knockout Amplitudes in Deuteron Stripping Reactions" @default.
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- W2065468462 doi "https://doi.org/10.1103/physrev.140.b311" @default.
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