arXiv · 1411.1240
Effects of $α$-cluster breaking on 3$α$ cluster structures in $^{12}$C
Abstract
To clarify the effects of $α$-cluster breaking on 3$α$ cluster structures in $^{12}$C, we investigate $^{12}$C using a hybrid model that combines the Brink-Bloch cluster model with the $p_{3/2}$ subshell closure wave function. We have found that $α$-cluster breaking caused by spin-orbit force significantly changes cluster structures of excited $0^{+}$ states through orthogonality to lower states. Spatially developed cluster components of the $0^{+}_{2}$ state are reduced. The $0^{+}_{3}$ state changes from a vibration mode in the bending motion of three $α$ clusters to a chain-like 3$α$ structure having an open triangle configuration. As a result of these structure changes of $0^{+}$ states, the band assignment for the $2^{+}_{2}$ state is changed by the $α$-cluster breaking effect. Namely, in model calculations without the $α$-cluster breaking effect, the $0^{+}_{2}$ state is assigned to be the band-head of the $2^{+}_{2}$ state. However, when we incorporate $α$-cluster breaking caused by the spin-orbit force, the $0^{+}_{3}$ state is regarded as the band-head of the $2^{+}_{2}$ state.
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Tadahiro Suhara, Yoshiko Kanada-En'yo. 2015-02-17. Effects of $α$-cluster breaking on 3$α$ cluster structures in $^{12}$C. https://doi.org/10.1103/physrevc.91.024315
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