English

Dibaryon model for nuclear force and the properties of the $3N$ system

Nuclear Theory 2009-11-11 v1

Abstract

The dibaryon model for NNNN interaction, which implies the formation of an intermediate six-quark bag dressed by a σ\sigma-field, is applied to the 3N3N system, where it results in a new three-body force of scalar nature between the six-quark bag and a third nucleon. A new multicomponent formalism is developed to describe three-body systems with nonstatic pairwise interactions and non-nucleonic degrees of freedom. Precise variational calculations of 3N3N bound states are carried out in the dressed-bag model including the new scalar three-body force. The unified coupling constants and form factors for 2N2N and 3N3N force operators are used in the present approach, in a sharp contrast to conventional meson-exchange models. It is shown that this three-body force gives at least half the 3N3N total binding energy, while the weight of non-nucleonic components in the 3^3H and 3^3He wavefunctions can exceed 10%. The new force model provides a very good description of 3N3N bound states with a reasonable magnitude of the σNN\sigma NN coupling constant. A new Coulomb 3N3N force between the third nucleon and dibaryon is found to be very important for a correct description of the Coulomb energy and r.m.s. charge radius in 3^3He. In view of the new results for Coulomb displacement energy obtained here for A=3 nuclei, an explanation for the long-term Nolen--Schiffer paradox in nuclear physics is suggested. The role of the charge-symmetry-breaking effects in the nuclear force is discussed.

Keywords

Cite

@article{arxiv.nucl-th/0503046,
  title  = {Dibaryon model for nuclear force and the properties of the $3N$ system},
  author = {V. N. Pomerantsev and V. I. Kukulin and V. T. Voronchev and Amand Faessler},
  journal= {arXiv preprint arXiv:nucl-th/0503046},
  year   = {2009}
}

Comments

64 pages, 7 figures, LaTeX, to be published in Phys. At. Nucl. (2005)