Coupled-channels analyses for Li + Pb fusion reactions with multi-neutron transfer couplings
arXiv:1803.04618 · doi:10.1016/j.physletb.2018.03.049
Abstract
We discuss the role of two-neutron transfer processes in the fusion reaction of the Li + Pb systems. We first analyze the Li + Pb reaction by taking into account the coupling to the Li + Pb channel. To this end, we assume that two neutrons are directly transferred to a single effective channel in Pb and solve the coupled-channels equations with the two channels. By adjusting the coupling strength and the effective -value, we successfully reproduce the experimental fusion cross sections for this system. We then analyze the Li + Pb reaction in a similar manner, that is, by taking into account three effective channels with Li + Pb, Li + Pb, and Li + Pb partitions. In order to take into account the halo structure of the Li nucleus, we construct the potential between Li and Pb with a double folding procedure, while we employ a Wood-Saxon type potential with the global Akyüz-Winther parameters for the other channels. Our calculation indicates that the multiple two-neutron transfer process plays a crucial role in the Li + Pb fusion reaction at energies around the Coulomb barrier.
References in corpus (3)
Cited by in corpus (4)
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