Abstract

Static magnetic moments, M1 transition rates, spectroscopic factors for (d, p), (p, 3He) and (p, 3H) reactions and Gamow-Teller transitions are calculated for 1p shell nuclei using wave functions derived by Goldhammer, Hill and Nachamkin. Results are compared with experiment and with the shell-model calculations of Cohen and Kurath. The general trend of agreement is found to be consistent with a gradual increase in configuration mixing throughout the shell. It is found that this mixing implies a channel coupling of 3S 1 and 3D 1 partial waves beyond the 1p shell, whose magnitude is approximately 9% in 6Li and 20% in 14N.

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