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$\alpha$-cluster decay from $^{24}$Mg resonances produced in $^{12}$C($^{16}$O,$^{24}$Mg)$\alpha$ reaction

Authors :
Wang, Dong-Xi
Ye, Yan-Lin
Lin, Cheng-Jian
Chen, Jia-Hao
Ma, Kai
Han, Jia-Xing
Jia, Hui-Ming
Yang, Lei
Yang, Li-Sheng
Hu, Zi-Yao
Chen, Ying
Pu, Wei-Liang
Li, Gen
Tan, Zhi-Wei
Zhu, Hong-Yu
Luo, Tian-Peng
Zhong, Shan-Hao
Huang, Da-Hu
Lou, Jian-Ling
Yang, Xiao-Fei
Li, Qi-Te
Xu, Jin-Yan
Yang, Zai-Hong
Wei, Kang
Publication Year :
2022

Abstract

A transfer reaction and cluster-decay experiment, $^{12}$C($^{16}$O,$^{24}$Mg$\rightarrow$$\alpha$+$^{20}$Ne)$\alpha$, was performed at a beam energy of 96 MeV. Both recoil and decay $\alpha$ particles were detected in coincidence, allowing us to deduce the energy-momentum of a $^{20}$Ne fragment. A number of resonant states of $^{24}$Mg were reconstructed up to an excitation energy of approximately 30 MeV. Owing to the experimentally achieved excellent resolutions of the $Q$-value and excitation-energy spectra, the relative decay widths for each resonant state in $^{24}$Mg to various final states of $^{20}$Ne were extracted, alone with the total decay width. The obtained results provide good testing ground for theoretical descriptions of the multiple clustering configurations in $^{24}$Mg.

Subjects

Subjects :
Nuclear Experiment

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2212.04334
Document Type :
Working Paper
Full Text :
https://doi.org/10.1088/1674-1137/ac9e9a