Enhanced monopole transition strength from the cluster decay of 13C

The inelastic excitations and cluster decay of 13 C have been measured using the reaction, 9 Be( 13 C, 13 C* → 9 Be + α ) 9 Be. We observe strong excitation to the 14.3-MeV (1/2 − ) resonant state from the cluster-decay channel, leading to an enhanced monopole matrix element of (6.3 ± 0.6) fm 2 . Th...

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Veröffentlicht in:Science China. Physics, mechanics & astronomy mechanics & astronomy, 2019, Vol.62 (1), p.12011, Article 12011
Hauptverfasser: Feng, Jun, Ye, YanLin, Yang, Biao, Lin, ChengJian, Jia, HuiMin, Pang, DanYang, Li, ZhiHuan, Lou, JianLing, Li, QiTe, Yang, XiaoFei, Li, Jing, Zang, HongLiang, Liu, Qiang, Jiang, Wei, Li, ChenGuang, Liu, Yang, Chen, ZhiQiang, Wu, HongYi, Wang, ChunGuang, Liu, Wei, Wang, Xiang, Li, JingJing, Luo, DiWen, Jiang, Ying, Bai, ShiWei, Xu, JinYan, Ma, NanRu, Sun, LiJie, Wang, DongXi
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Sprache:eng
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Zusammenfassung:The inelastic excitations and cluster decay of 13 C have been measured using the reaction, 9 Be( 13 C, 13 C* → 9 Be + α ) 9 Be. We observe strong excitation to the 14.3-MeV (1/2 − ) resonant state from the cluster-decay channel, leading to an enhanced monopole matrix element of (6.3 ± 0.6) fm 2 . This large cluster-related monopole strength is a clear indication of the cluster-structure domination of this state and is consistent with the recent prediction of the orthogonality condition model (OCM). It would be interesting to further explore the three-center molecular rotational band that is initiated from the observed band-head.
ISSN:1674-7348
1869-1927
DOI:10.1007/s11433-018-9258-7