English

Dibaryon resonances and short-range $NN$ interaction

Nuclear Theory 2022-12-13 v2 High Energy Physics - Phenomenology

Abstract

The dibaryon concept for the nuclear force is presented, assuming that the main attraction between the nucleons at medium distances is determined by the ss-channel exchange of an intermediate six-quark (dibaryon) state. To construct the respective NNNN interaction model, a microscopic six-quark description of the NNNN system is used, in which symmetry aspects play a special role. It is shown that the NNNN interaction in all important partial waves can be described properly by a superposition of the long-range tt-channel one-pion exchange and the ss-channel exchange by an intermediate dibaryon. The developed model gives a good description of both elastic phase shifts and inelasticities of NNNN scattering in all SS, PP, DD and FF partial waves at energies from zero to 600 - 800 MeV and even higher.The parameters of the intermediate six-quark states corresponding to the best fit of NNNN scattering data are found to be consistent with the parameters of the known dibaryon resonances in those NNNN partial configurations where their existence has been experimentally confirmed. Predictions for new dibaryon states are given as well.

Keywords

Cite

@article{arxiv.2205.06377,
  title  = {Dibaryon resonances and short-range $NN$ interaction},
  author = {V. I. Kukulin and V. N. Pomerantsev and O. A. Rubtsova and M. N. Platonova and I. T. Obukhovsky},
  journal= {arXiv preprint arXiv:2205.06377},
  year   = {2022}
}

Comments

23 pages, 9 figures; version accepted to Chinese Physics C with updated references

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