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New approach with CDCC for evaluating incomplete and complete fusion cross sections

Hashimoto, Shintaro  ; Ogata, Kazuyuki*; Chiba, Satoshi; Yahiro, Masanobu*

The breakup effect on the fusion reaction is an interesting subject, and the understanding of the mechanism plays an important role in studying weakly-bound nuclei. The breakup process leads to two fusion reactions: complete fusion and incomplete fusion. The incomplete fusion process with emitting a neutron in deuteron induced reactions attracts nuclear engineers, because nuclear data of (d, n) on various targets are required for studies on nuclear applications. We propose a new approach for evaluating incomplete and complete fusion cross sections using CDCC. We apply this method to deuteron induced reactions at energies above the Coulomb barrier. Results of the method are compared with those of the Glauber model, which reproduces experimental data of $$^7$$Li(d, n) at 40 MeV added by the elastic breakup cross section obtained by CDCC. We discuss the difference between the two models, and confirm the validity of approximations used in the Glauber model.

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