Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8186931 | Physics Letters B | 2018 | 6 Pages |
Abstract
We discuss the role of two-neutron transfer processes in the fusion reaction of the 9,11Liâ+â208Pb systems. We first analyze the 9Liâ+â208Pb reaction by taking into account the coupling to the 7Liâ+â210Pb channel. To this end, we assume that two neutrons are directly transferred to a single effective channel in 210Pb and solve the coupled-channels equations with the two channels. By adjusting the coupling strength and the effective Q-value, we successfully reproduce the experimental fusion cross sections for this system. We then analyze the 11Liâ+â208Pb reaction in a similar manner, that is, by taking into account three effective channels with 11Liâ+â208Pb, 9Liâ+â210Pb, and 7Liâ+â212Pb partitions. In order to take into account the halo structure of the 11Li nucleus, we construct the potential between 11Li and 208Pb with a double folding procedure, while we employ a Woods-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 11Liâ+â208Pb fusion reaction at energies around the Coulomb barrier.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
Ki-Seok Choi, Myung-Ki Cheoun, W.Y. So, K. Hagino, K.S. Kim,