Effects of unconventional breakup modes on incomplete fusion of weakly bound nuclei
arXiv:1802.01181 · doi:10.1103/PhysRevC.97.024611
Abstract
The incomplete fusion dynamics of Li + Bi collisions at energies above the Coulomb barrier is investigated. The classical dynamical model implemented in the {\sc platypus} code is used to understand and quantify the impact of both Li resonance states and transfer-triggered breakup modes (involving short-lived projectile-like nuclei such as Be and Li) on the formation of incomplete fusion products. Model calculations explain the experimental incomplete-fusion excitation function fairly well, indicating that (i) delayed direct breakup of Li reduces the incomplete fusion cross-sections, and (ii) the neutron-stripping channel practically determines those cross-sections.
Accepted in Physical Review C
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Cited by in corpus (4)
- Complete and incomplete fusion of Li projectiles on heavy targets
- Theoretical analysis of Li + Pb reaction and the critical angular momentum for complete fusion
- Semi-classical approaches to heavy-ion reactions: fusion, rainbow, and glory
- Breakup dynamics of a neutron-halo projectile on heavy target at deep sub-barrier energies