arXiv · 1602.02957
The impact of the off-diagonal cross-shell interaction on $^{14}$C
Abstract
The shell-model investigation is performed to show the impact on the structure of $^{14}$C contributed by the off-diagonal cross-shell interaction, $\langle pp \mid$V$\mid sdsd\rangle$, which represents the mixing between the $0$ and $2\hbarω$ configurations in the $psd$ model space. Observed levels of the positive states in $^{14}$C can be nicely described in $0-4\hbarω$ or a larger model space through the well defined Hamiltonians, YSOX and WBP, with a reduction on the strength of the $\langle pp \mid$V$\mid sdsd\rangle$ interaction in the latter. The observed B(GT) values for $^{14}$C can be generally described by YSOX, while WBP and their modifications on the $\langle pp \mid$V$\mid sdsd\rangle$ interaction fail for some values. Further investigation shows the effect of such interaction on the configuration mixing and occupancy. The present work shows examples on how the off-diagonal cross-shell interaction strongly drives the nuclear structure.
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Cenxi Yuan. 2017-07-24. The impact of the off-diagonal cross-shell interaction on $^{14}$C. https://doi.org/10.1088/1674-1137%2F41%2F10%2F104102
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