Self-consistent analysis of sub-barrier fusion enhancement effect in Ca+Ca and Ni+Ni

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Nan-Ru Ma, Hui-Ming Jia, Cheng-Jian Lin, Lei Yang, Xin-Xing Xu, Li-Jie Sun, Feng Yang, Zhen-Dong Wu, Huan-Qiao Zhang, Zu-Hua Liu and Dong-Xi Wang. Self-consistent analysis of sub-barrier fusion enhancement effect in Ca+Ca and Ni+Ni[J]. Chinese Physics C, 2016, 40(11): 114001. doi: 10.1088/1674-1137/40/11/114001
Nan-Ru Ma, Hui-Ming Jia, Cheng-Jian Lin, Lei Yang, Xin-Xing Xu, Li-Jie Sun, Feng Yang, Zhen-Dong Wu, Huan-Qiao Zhang, Zu-Hua Liu and Dong-Xi Wang. Self-consistent analysis of sub-barrier fusion enhancement effect in Ca+Ca and Ni+Ni[J]. Chinese Physics C, 2016, 40(11): 114001.  doi: 10.1088/1674-1137/40/11/114001 shu
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Received: 2016-04-20
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    Supported by the National Key Basic Research Development Program of China (2013CB834404) and the National Natural Science Foundation of China (11475263, 11375268, U1432246 and U1432127)

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Self-consistent analysis of sub-barrier fusion enhancement effect in Ca+Ca and Ni+Ni

    Corresponding author: Hui-Ming Jia,
    Corresponding author: Cheng-Jian Lin,
  • 1. China Institute of Atomic Energy, Beijing 102413, China
Fund Project:  Supported by the National Key Basic Research Development Program of China (2013CB834404) and the National Natural Science Foundation of China (11475263, 11375268, U1432246 and U1432127)

Abstract: The fusion dynamic mechanism of heavy ions at energies near the Coulomb barrier is complicated and still not very clear up to now. Accordingly, a self-consistent method based on the CCFULL calculations has been developed and applied for an ongoing study of the effect of the positive Q-value neutron transfer (PQNT) channels in this work. The typical experimental fusion data of Ca+Ca and Ni+Ni is analyzed within the unified calculation scheme. The PQNT effect in near-barrier fusion is further confirmed based on the self-consistent analysis and extracted quantitatively.

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