Formation and decay of resonance state in Be and B nuclei. Microscopic three-cluster model investigations
arXiv:1706.05514 · doi:10.1103/PhysRevC.96.034322
Abstract
We study nature of the low-lying resonance states in mirror nuclei Be and B. Investigations are performed within a three-cluster model. The model makes use of the hyperspherical harmonics, which provides convenient description of three-cluster continuum. The dominant three-cluster configurations and in Be and B, respectively, are taken into account. Dominant decay channels for all resonance states in Be and B are explored. Much attention is paid to the controversial resonance states in both nuclei. We study effects of the Coulomb interaction on energy and width of three-cluster resonances in the mirror nuclei Be and B. We also search for the Hoyle-analogue state which is a key step for alternative way of Be and B syntheses in a triple collision of clusters in a stellar environment.
17 pages, 16 figures, submitted to Phys. Rev. C