Bound states of $^{9}_{\phi}$Be and $^{6}_{\phi\phi}$He nuclei with $\phi$+$\alpha$+$\alpha$ and $\phi$+$\phi$+$\alpha$ cluster models
Abstract
We investigate the Be and He mesic nuclei within the framework of the three-body cluster model as the ++ and ++ systems, using the Faddeev formalism in configuration space. The - potential is determined through a folding procedure of the HAL QCD - interaction in the channel with the matter distribution of He. The phenomenological - and - potentials are taken from the literature. Additionally, we construct a Wood-Saxon (WS) type interaction to simulate the - potential, also taken from the literature, based on an effective Lagrangian approach that includes meson loops in the -meson self-energy. A comparison of binding energies obtained for both types of the - interactions reveals qualitative agreement. %between the obtained approaches. We predict the binding energy for the Be and He mesic nuclei as the mirror ++ and ++ systems in the range of 1-11 MeV and 3-10 MeV, respectively. The range of values of the binding energies relies on the choice of the WS - interaction parameters.
Cite
@article{arxiv.2408.13415,
title = {Bound states of $^{9}_{\phi}$Be and $^{6}_{\phi\phi}$He nuclei with $\phi$+$\alpha$+$\alpha$ and $\phi$+$\phi$+$\alpha$ cluster models},
author = {Igor Filikhin and Roman Ya. Kezerashvili and Branislav Vlahovic},
journal= {arXiv preprint arXiv:2408.13415},
year = {2025}
}
Comments
11 pages, 3 figures