2000
DOI: 10.1103/physrevc.61.037602
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Role of breakup processes in fusion enhancement of drip-line nuclei at energies below the Coulomb barrier

Abstract: We carry out realistic coupled-channels calculations for 11 Be + 208 Pb reaction in order to discuss the effects of break-up of the projectile nucleus on sub-barrier fusion. We discretize in energy the particle continuum states, which are associated with the break-up process, and construct the coupling form factors to these states on a microscopic basis. The incoming boundary condition is employed in solving coupled-channels equations, which enables us to define the flux for complete fusion inside the Coulomb … Show more

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Cited by 206 publications
(307 citation statements)
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“…A few wave-packet propagations allows one to calculate the converged ICF excitation function in a broad range of incident energies. In contrast to the usual CDCC fusion calculations [17][18][19], this ICF excitation function includes ICF from the projectile bound state(s) [20].…”
Section: A One-dimensional Toy Model With Two Degrees Of Freedommentioning
confidence: 99%
“…A few wave-packet propagations allows one to calculate the converged ICF excitation function in a broad range of incident energies. In contrast to the usual CDCC fusion calculations [17][18][19], this ICF excitation function includes ICF from the projectile bound state(s) [20].…”
Section: A One-dimensional Toy Model With Two Degrees Of Freedommentioning
confidence: 99%
“…Fig. 8 shows the excitation functions of elastic, quasielastic, breakup, and quasi-elastic plus breakup for the 6,7 Li+ 208 Pb systems. The theoretical calculations by the ECIS code [35] are also shown in the figure for reference.…”
Section: Effects Of Neutron Transfers With Positive Q-values In 32 S+mentioning
confidence: 99%
“…Guiding by the above thought, the quasi-elastic scatterings for the weakly-bound systems 6,7 Li, 9 Be+ 208 Pb were measured at backward angles with high precision. Fig.…”
Section: Effects Of Neutron Transfers With Positive Q-values In 32 S+mentioning
confidence: 99%
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“…Process (ii) is referred to as an incomplete fusion reaction, while both of processes (i) and (iii) lead to complete fusion. Calculations based on the continuum-discretized coupled-channels method may account for the total fusion cross section (the sum of all the processes) and/or the separate contribution of process (i) [ 5,6], but it is not easy to compute cross sections for process (iii), that is, the breakup followed by complete fusion. In order to model this process, we need to follow the trajectories of the breakup fragments to determine whether one or both fragments are captured by the target nucleus.…”
Section: Introductionmentioning
confidence: 99%