Evidence of Cluster Structure of $^9$Be from $^3$He+$^9$Be Reaction
Abstract
The study of inelastic scattering and multi-nucleon transfer reactions was performed by bombarding a Be target with a He beam at an incident energy of 30 MeV. Angular distributions for Be(He,He)Be, Be(He,He)Be, Be(He,He)Be, Be(He,Li)Li and Be(He,Li)Li reaction channels were measured. Experimental angular distributions for the corresponding ground states (g.s.) were analysed within the framework of the optical model, the coupled-channel approach and the distorted-wave Born approximation. Cross sections for channels leading to unbound He, Li and Be systems were obtained from singles measurements where the relationship between the energy and the scattering angle of the observed stable ejectile is constrained by two-body kinematics. Information on the cluster structure of Be was obtained from the transfer channels. It was concluded that cluster transfer is an important mechanism in the investigated nuclear reactions. In the present work an attempt was made to estimate the relative strengths of the interesting Be+ and He+ cluster configurations in Be. The branching ratios have been determined confirming that the He+ configuration plays an important role. The configuration of Be consisting of two bound helium clusters He+He is significantly suppressed, whereas the two-body configurations Be+ and He+ including unbound Be and He are found more probable.
Keywords
Cite
@article{arxiv.1504.03942,
title = {Evidence of Cluster Structure of $^9$Be from $^3$He+$^9$Be Reaction},
author = {S. M. Lukyanov and M. N. Harakeh and M. A. Naumenko and Yi Xu and W. H. Trzaska and V. Burjan and V. Kroha and J. Mrazek and V. Glagolev and Š. Piskoř and E. I. Voskoboynik and S. V. Khlebnikov and Yu E. Penionzhkevich and N. K. Skobelev and Yu G. Sobolev and G. P. Tyurin and K. Kuterbekov and Yu Tuleushev},
journal= {arXiv preprint arXiv:1504.03942},
year = {2015}
}
Comments
14 pages, 5 figures, HI elastic and inelastic scattering, Transfer reactions, Cluster in light nuclei, Coupled channels, DWBA, Optical model