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- W2055713612 abstract "A different approach to the determination of heavy-ion fusion cross sections is described which requires data on fission fragment angular distributions alone, without going to more difficult absolute measurements of the fission and evaporation residue cross sections. The present method involves a direct determination of lcr (maximum l-wave for which fusion is possible) from the statistical theory analysis of fragment angular distributions corresponding to the fission events with full momentum transfer, taking into consideration the contribution to fission from different stages of deexcitation. The published data on fission fragment angular distributions in the fission of197Au and209Bi by B, C, N and O ions in the bombarding energy range of 60 MeV to 120 MeV were analysed to illustrate this method. For a few cases, where data on the direct measurement of σ fu were available, these values were found to be in good agreement with those obtained by this method. The energy dependence of lcr (or fusion cross sections) thus. determined, were also analysed to obtain internuclear potentials in a friction-free analysis and were compared with the proximity potential function. The energy variations of lcr 2 calculated on the basis of the proximity potential with and without the inclusion of one-body proximity friction are also compared with the experimental values. It was seen that satisfactory fits to the data can be achieved with the inclusion of one-body friction." @default.
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- W2055713612 date "1979-10-01" @default.
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- W2055713612 title "Complete fusion cross sections from fission fragment angular distribution analysis and study of internuclear potentials" @default.
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- W2055713612 doi "https://doi.org/10.1016/0375-9474(79)90291-4" @default.
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