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- W2000268450 abstract "Quasielastic excitation function measurement has been carried out for the ${}^{4}$He $+$ ${}^{232}$Th system at ${ensuremath{theta}}_{text{lab}}={160}^{ensuremath{circ}}$ with respect to the beam direction, to obtain a representation of the fusion-barrier distribution. Using the present data along with previously measured barrier distribution results on ${}^{12}$C, ${}^{16}$O, and ${}^{19}$F $+$ ${}^{232}$Th systems, a systematic analysis has been carried out to investigate the role of target and/or projectile structures on fusion-barrier distribution. It is observed that for ${}^{4}$He, ${}^{12}$C, and ${}^{16}$O $+$ ${}^{232}$Th reactions, the couplings due to target states only are required in coupled-channel fusion calculations to explain the experimental data, whereas for the ${}^{19}$F $+$ ${}^{232}$Th system along with the coupling of target states, inelastic states of ${}^{19}$F are also required to explain the experimental results on fusion-barrier distribution. The width of the barrier distribution shows interesting transition behavior when plotted with respect to the target-projectile charge product for the above systems." @default.
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- W2000268450 date "2011-07-21" @default.
- W2000268450 modified "2023-09-27" @default.
- W2000268450 title "Systematic study of projectile-structure effect on the fusion-barrier distribution" @default.
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- W2000268450 doi "https://doi.org/10.1103/physrevc.84.011602" @default.
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