Spectroscopy and shell model interpretation of high-spin states in the N = 126 nucleus 214Ra
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Stuchbery, A. E.
Dracoulis, G. D.
Kibédi, T.
Byrne, A. P.
Fabricius, B.
Poletti, A. R.
Lane, G. J.
Baxter, A. M.
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Abstract
Excited states in the N = 126 nucleus 214Ra have been studied using γ-ray and electron spectroscopy following reactions of 12C and 13C on 206Pb targets. Levels were identified to spins of ∼ 25 h{stroke} and excitation energies of ∼ 7.8 MeV. Lifetimes and magnetic moments were measured for several levels, including a spin (25-) core-excited isomer at 6577.0 keV with τ = 184 ± 5 ns and g = 0.66 ± 0.01. The level scheme, lifetime and magnetic moment data are compared with, and discussed in terms of, empirical shell-model calculations and multiparticle octupole-coupled shell-model calculations. In general, the experimental data are well described by the empirical shell model.
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Nuclear Physics, Section A
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