4.5 Article

Examining the role of transfer coupling in sub-barrier fusion of 46,50Ti+124Sn

期刊

PHYSICAL REVIEW C
卷 94, 期 2, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.94.024616

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资金

  1. U.S. Department of Energy, Office of Science, Office of Nuclear Physics
  2. Australian Research Council [DP130101569, FT120100760, DP140101337, FL110100098, DE140100784]
  3. U.S. Department of Energy [DE-AC05-00OR22725]
  4. United States Government

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Background: The presence of neutron transfer channels with positive Q values can enhance sub-barrier fusion cross sections. Recent measurements of the fusion excitation functions for Ni-58+Sn-132,Sn-124 found that the fusion enhancement due to the influence of neutron transfer is smaller than that in Ca-40+Sn-132,Sn-124 although the Q values for multineutron transfer are comparable. Purpose: To investigate the differences observed between the fusion of Sn + Ni and Sn + Ca. Methods: Fusion excitation functions for Ti-46,Ti-50+Sn-124 have been measured at energies near the Coulomb barrier. Results: A comparison of the barrier distributions for Ti-46+Sn-124 and Ca-40+Sn-124 shows that the Ca-40+Sn-124 system has a barrier strength resulting from the coupling to the very collective octupole state in Ca-40 at an energy significantly lower than the uncoupled barrier. Conclusions: The large sub-barrier fusion enhancement in Ca-40 induced reactions is attributed to both couplings to neutron transfer and inelastic excitation, with the octupole vibration of Ca-40 playing a major role.

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