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- W2000911902 abstract "The effects of residual interaction are investigated in 15O and 15N. Wave functions of the 12− and 32− states are constructed by mixing the single-hole spherical and 2p3h deformed configurations. The even-parity states are constructed by mixing the 1p2h and 3p4h deformed states. The effective charge for the E2 transitions among odd-parity states is calculated by taking account of the contribution of the 2+ states of the 16O core. The E2/M1 mixing ratio of the 32− 6 MeV → 12− g.s. transition is calculated. Calculated values agree well with experiment. The 32− 6 MeV → 12− g.s. transition is found to be predominantly single-hole M1 both in 15O and 15N. The electromagnetic decay of the 5 MeV doublet, 6.79 MeV 32+, 8.29 MeV 32+ and 8.74 MeV 12+ states of 15O is also discussed. The ft value for the 15Oβ+ 15N ground-state decay is calculated. It is found to be independent of the deformed admixture in the ground state and is 10% lower than the experimental value. The spectroscopic factors of the 12− and 32− states, for single-nucleon pick-up reactions 16O(p, d)15O etc. are also calculated. Agreement with experiment is good for 10% deformed admixture. From this and the calculations of electromagnetic decay of the levels of mass 15, it is concluded that the ground state has a 10% deformed 2p3h component." @default.
- W2000911902 created "2016-06-24" @default.
- W2000911902 creator A5008154368 @default.
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- W2000911902 date "1968-05-01" @default.
- W2000911902 modified "2023-10-17" @default.
- W2000911902 title "Core polarization effects in 15O and 15N" @default.
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- W2000911902 doi "https://doi.org/10.1016/0375-9474(68)90204-2" @default.
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