2019
DOI: 10.1016/j.nimb.2019.01.005
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Activation cross sections of deuteron induced reactions on natHf in the 12–50 MeV energy range

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Cited by 2 publications
(4 citation statements)
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“…From table 4 and figure 4, it is also evident that the compound nuclear reaction mechanisms go far from the experimental values thought the course of the incident energies which in turn confirms that the is no formation of compound nuclear reaction mechanisms under the specified incident energies. This indicates that after an incident energy of 61.1 MeV, the reaction can be neither compound nuclear reaction nor pre-equilibrium nuclear reaction, but it could be direct/pickup reaction mechanisms [7,25].…”
Section: Ni (α 2n+p+α) 55 Co Nuclear Reactionmentioning
confidence: 99%
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“…From table 4 and figure 4, it is also evident that the compound nuclear reaction mechanisms go far from the experimental values thought the course of the incident energies which in turn confirms that the is no formation of compound nuclear reaction mechanisms under the specified incident energies. This indicates that after an incident energy of 61.1 MeV, the reaction can be neither compound nuclear reaction nor pre-equilibrium nuclear reaction, but it could be direct/pickup reaction mechanisms [7,25].…”
Section: Ni (α 2n+p+α) 55 Co Nuclear Reactionmentioning
confidence: 99%
“…The reaction cross-sections of the investigated reactions compared with the data given in the on-line EXFOR library [24][25][26]. This library is based on both default and adjusted computer code COMPLET calculations [2,21,25]. To achieve a better description of available data for (α, n+p) reactions in these codes, a phenomenological energy dependent enhancement factor was introduced based on cross sections for medium and heavy nuclei.…”
Section: Theoretical Calculations With Computer Codesmentioning
confidence: 99%
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