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- W2037606492 abstract "The (p, t) reaction on the nuclei 50,48,46Ti has been studied at bombarding energies of 27, 23, and 19 MeV. The angular distributions (5°–110° lab) of approximately 30 transitions at 27 MeV with L = 0, 2, 3, 4 were examined for characteristic features which could be uniquely associated with the L transfer. Both the empirical systematics and the comparisons with distorted-wave Born aproximmation (DWBA) calculations were found to provide less reliable L-value determinations, other than for L = 0, than is often assumed. The DWBA theory of the (p, t) reaction is discussed and theoretical expressions employed in the calculations are given in an appendix. The DWBA calculations were extensively investigated for sensitivity to input parameters and assumed transfer configuration. It is shown that the relative phases of the form factor terms can affect angular distribution shapes at forward angles. A successful element of the theory was the description of the energy dependence in the differential cross sections of the 50Ti(p, t)48Ti (ground state) transitions between 27 and 19 MeV when a recently developed energy dependent mass-3 potential was employed. Magnitudes of the reaction differential cross sections were expressed in terms of a “single pair unit” defined relative to a local, zero-range, DWBA calculation assuming a single transfer configuration. In comparing our strength values with those of a similar study at 51 MeV, we find differences up to a factor of four. Our measurements provide some new spin-parity information. Several new 0+ states as well as states with 2 ⩽ J ⩽ 6 in 48,46,44Ti are identified. Some rather striking disagreements with other studies were encountered." @default.
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- W2037606492 date "1973-04-01" @default.
- W2037606492 modified "2023-10-16" @default.
- W2037606492 title "Study of the (p, t) reaction on the even-A titanium isotopes" @default.
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- W2037606492 doi "https://doi.org/10.1016/0003-4916(73)90043-2" @default.
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