Study of pre-scission particle emissions and fission probability of the 178W produced in fusion reactions

  • A dynamical model based on one-dimensional Langevin equations was used to calculate the average pre-fission multiplicities of neutrons, light charged particles, and the fission probability for compound nucleus 178W produced in fusion reactions. The pre-scission multiplicities of particles and fission probability are calculated and compared with the experimental data over a wide range of excitation energy. A modified wall and window dissipation with a reduction coefficient, ks, has been used in the Langevin equations for reproducing experimental data. It was shown that the results of the calculations are in good agreement with the experimental data by using values of ks in the range 0.24≤ ks ≤ 0.47.
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H. Eslamizadeh and M. Pirpour. Study of pre-scission particle emissions and fission probability of the 178W produced in fusion reactions[J]. Chinese Physics C, 2014, 38(6): 064101. doi: 10.1088/1674-1137/38/6/064101
H. Eslamizadeh and M. Pirpour. Study of pre-scission particle emissions and fission probability of the 178W produced in fusion reactions[J]. Chinese Physics C, 2014, 38(6): 064101.  doi: 10.1088/1674-1137/38/6/064101 shu
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Received: 2013-11-22
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Study of pre-scission particle emissions and fission probability of the 178W produced in fusion reactions

    Corresponding author: M. Pirpour,

Abstract: A dynamical model based on one-dimensional Langevin equations was used to calculate the average pre-fission multiplicities of neutrons, light charged particles, and the fission probability for compound nucleus 178W produced in fusion reactions. The pre-scission multiplicities of particles and fission probability are calculated and compared with the experimental data over a wide range of excitation energy. A modified wall and window dissipation with a reduction coefficient, ks, has been used in the Langevin equations for reproducing experimental data. It was shown that the results of the calculations are in good agreement with the experimental data by using values of ks in the range 0.24≤ ks ≤ 0.47.

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