Author:
Ma 马 Kai 凯,Ye 叶 Yan-Lin 沿林,Lin 林 Cheng-Jian 承键,Chen 陈 Jia-Hao 家豪,Wang 王 Dong-Xi 东玺,Han 韩 Jia-Xing 家兴,Jia 贾 Hui-Ming 会明,Yang 杨 Lei 磊,Yang 阳 Li-Sheng 黎升,Hu 胡 Zi-Yao 梓瑶,Chen 陈 Ying 莹,Pu 蒲 Wei-Liang 伟良,Li 李 Gen 根,Tan 谭 Zhi-Wei 智威,Huang 黄 Da-Hu 大湖,Luo 骆 Tian-Peng 天鹏,Zhong 钟 Shan-Hao 善豪,Lou 楼 Jian-Ling 建玲,Yang 杨 Xiao-Fei 晓菲,Li 李 Zhi-Huan 智焕,Li 李 Qi-Te 奇特,Xu 许 Jin-Yan 金艳,Yang 杨 Zai-Hong 再宏,Wei 魏 Kang 康
Abstract
Abstract
A
Li(
O,
Ne
)
H multi-nucleon transfer-reaction experiment was performed to populate the highly excited states in
Ne. The subsequent decay particles,
He or protons from the
Ne resonant states, were detected in coincidence with the recoil
H. The excitation-energy spectra of
Ne were reconstructed using the detected proton or
He and the deduced
F or
O data, respectively. A broad resonance at about 7.85 MeV (1/2
) was observed, with partial decay widths different from the previously reported values, which may have a significant impact on the destruction of
F in astrophysical processes. Several resonances up to very high excitation energies have been identified with a large α-clustering strength, which confirm the formation of the cluster structure with a one-hole configuration in light nuclei and encourage further systematic studies of the cluster structure in
Ne.
Funder
National Natural Science Foundation of China
National Key R&D Program of China
Subject
Astronomy and Astrophysics,Instrumentation,Nuclear and High Energy Physics
Cited by
1 articles.
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