Abstract
The (t, p) reactions leading to 52,54,56Cr have been investigated at a bombarding energy of 12 MeV, using the Aldermaston multi-angle magnetic spectrograph. Levels in the final nuclei were measured for excitation energies below 5–6 MeV. A number of 0 +, 2 +, 3 − and 4 + states were identified from the shapes of the proton angular distributions. The results are compared with previous assignments where possible, and good agreement is obtained. The strongest L = 0 transitions in each of the reactions 50,52,54Cr(t, p) are those to the 2.663 MeV excited state of 52Cr and to the ground states of 54Cr and 56Cr. This is an agreement with the previously observed trend in (t, p) reactions. The level structure of 52Cr and 54Cr is compared with theoretical calculations.
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