Systematic study of complete fusion suppression in reactions involving weakly bound nuclei at energies above the Coulomb barrier
arXiv:1512.00960 · doi:10.1103/PhysRevC.93.014615
Abstract
Complete fusion excitation functions of reactions involving breakup are studied by using the empirical coupled-channel (ECC) model with breakup effects considered. An exponential function with two parameters is adopted to describe the prompt-breakup probability in the ECC model. These two parameters are fixed by fitting the measured prompt-breakup probability or the complete fusion cross sections. The suppression of complete fusion at energies above the Coulomb barrier is studied by comparing the data with the predictions from the ECC model without the breakup channel considered. The results show that the suppression of complete fusion are roughly independent of the target for the reactions involving the same projectile.
9 pages, 6 figures, 3 tables
References in corpus (10)
- Fusion and Direct Reactions of Halo Nuclei at Energies around the Coulomb Barrier
- Theoretical study of the synthesis of superheavy nuclei with Z= 119 and 120 in heavy-ion reactions with trans-uranium targets
- Relating breakup and incomplete fusion of weakly-bound nuclei through a classical trajectory model with stochastic breakup
- Coupled-channels effects in elastic scattering and near-barrier fusion induced by weakly bound nuclei and exotic halo nuclei
- Suppression of complete fusion due to breakup in the reactions B + Bi
- Influence of projectile <alpha>- breakup threshold on complete fusion
- Fusion of Li with Tb} at near barrier energies
- Systematic study of breakup effects on complete fusion at energies above the Coulomb barrier
- Modelling incomplete fusion dynamics of weakly-bound nuclei at near-barrier energies
- Theoretical study of fusion reactions S + Zr and Ca + Zr and quadrupole deformation of Zr