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- W2068710101 abstract "A simple model of two-nucleon transfer reactions such as (t, p) or (3He, n) reactions is proposed. A function called pairing potential represents the coherent sum over various single particle configurations of the captured nucleons, which appears in the usual DWBA amplitude for the ground state transition. Considering two extremes, a uniform distribution and a surface-peaked one, for the radial shape of the pairing potential, the differential cross sections for (t, p) ground state transitions are calculated in the DWBA method. Transitions to pairing vibrational 0+ states and shape-isomeric 0+ states can be treated in the same manner. The method is extended to treat the transitions to vibrational or rotational 2+ states by making the potential deformed in either a static or dynamic sense. The shapes of the angular distributions are quite insensitive to the shape of the form factor. Good agreements with experiments can be obtained. Finally the possibility to generalize the nucleon optical potential — Hartree-Fock potential in the lower order — to a Hartree-Bogoliubov type potential is discussed in order to clarify the experimental dominance of the (t, p) ground state transitition. Equivalence of this generalized optical potential method with the present DWBA method is also shown." @default.
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- W2068710101 date "1968-09-01" @default.
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- W2068710101 title "Pairing potential and two-nucleon transfer reaction" @default.
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- W2068710101 doi "https://doi.org/10.1016/0375-9474(68)90859-2" @default.
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