English

Continuum-discretized coupled-channel calculations for $^{6}$Li fusion reactions with closed channels

Nuclear Theory 2023-06-27 v1

Abstract

Fusion reactions induced by the weakly bound nucleus 6^{6}Li with targets 28^{28}Si, 64^{64}Ni, 144^{144}Sm and 209^{209}Bi at energies around the Coulomb barrier are investigated within a three-body model where 6^{6}Li is described with an α+d\alpha + d cluster model. The total fusion (TF) cross sections are calculated with the continuum-discretized coupled-channel (CDCC) method and the complete fusion (CF) cross sections are extracted through the sum-rule model. The calculations demonstrate that (i) for the TF cross section calculations, the continuum states up to 40 MeV are found to be necessary, which corresponds to the inclusion of closed channels for light and medium mass targets, such as 28^{28}Si, 59^{59}Co and 144^{144}Sm, (ii) the converged CDCC results for TF cross section at energies above the Coulomb barrier are almost the same as single channel results in which the continuum coupling effect is neglected, and (iii) the continuum coupling strongly influences partial wave fusion cross sections and the closed channels play a significant role in the improvement of the description of the CF cross sections at energies below the Coulomb barrier for the 6^6Li+28^{28}Si, 59^{59}Co and 144^{144}Sm systems.

Keywords

Cite

@article{arxiv.2306.06621,
  title  = {Continuum-discretized coupled-channel calculations for $^{6}$Li fusion reactions with closed channels},
  author = {Wendi Chen and D. Y. Pang and Hairui Guo and Ye Tao and Weili Sun and Yangjun Ying},
  journal= {arXiv preprint arXiv:2306.06621},
  year   = {2023}
}

Comments

15 pages; 23 figures