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- W2199751194 abstract "Abstract In heavy-ion induced reactions, incomplete fusion (ICF) has been found to be a process of greater importance and of distinct nature even at slightly above the barrier energies where complete fusion (CF) is supposed to be dominant. However, the studies are limited to a few projectile target combinations only. To confirm the distinctly different decay patterns observed in case of CF and ICF residues, and to understand the role of high l-values in the onset of ICF, a particle-γ-coincidence technique has been employed to measure spin-distributions and feeding intensity profiles of CF and ICF residues populated via x n / p x n / α x n -channels in 16O+159Tb interactions at E lab ≈ 83.5 ± 1.5 , 88.5 ± 1.5 , 93.5 ± 1.5 and 97.6 ± 1.4 MeV . The Gamma Detector Array and the Charged Particles Detector Array have been used to detect prompt γ-rays in coincidence with charged particles (p and α). CF-α and ICF-α channels have been identified from backward (B)- and forward (F)-α-gated-γ-spectra, respectively. Reaction dependent decay patterns (thus, the feeding intensity profiles) have been observed in different α emitting channels. The CF channels are found to be widely populated and strongly fed over a broad spin range. In case of ICF-α channels, narrow range feeding was observed only for high-spin states or the low spin states were not populated. The mean l-values involved in the production of ICF- α x n -channels are found to be higher than those involved in the production of CF- α x n -channels associated with fusion-evaporation reactions." @default.
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- W2199751194 date "2016-02-01" @default.
- W2199751194 modified "2023-10-18" @default.
- W2199751194 title "Incomplete fusion in 16O+159Tb" @default.
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- W2199751194 doi "https://doi.org/10.1016/j.nuclphysa.2015.11.012" @default.
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