The properties of the three-nucleon system with the dressed-bag model for nn interaction. I: New scalar three-body force
arXiv:nucl-th/0308059 · doi:10.1088/0954-3899/30/3/005
Abstract
A multi-component formalism is developed to describe three-body systems with nonstatic pairwise interactions and non-nucleonic degrees of freedom. The dressed-bag model for interaction based on the formation of an intermediate six-quark bag dressed by a -field is applied to the system, where it results in a new three-body force between the six-quark bag and a third nucleon. Concise variational calculations of bound states are carried out in the dressed-bag model including the new three-body force. It is shown that this three-body force gives at least half the total binding energy, while the weight of non-nucleonic components in the H and He wavefunctions can exceed 10%. The new force model provides a very good description of bound states with a reasonable magnitude of the coupling constant. The model can serve as a natural bridge between dynamical description of few-nucleon systems and the very successful Walecka approach to heavy nuclei and nuclear matter.
26 pages, Latex, 7 figures