English

Photodisintegration of Three-Body Nuclei with Realistic 2N and 3N Forces

Nuclear Theory 2009-10-31 v2

Abstract

Total photonuclear absorption cross sections of 3^3H and 3^3He are studied using realistic NN and NNN forces. Final state interactions are fully included. Two NN potential models, the AV14 and the r-space Bonn-A potentials, are considered. For the NNN forces the Urbana-VIII and Tucson-Melbourne models are employed. We find the cross section to be sensitive to nuclear dynamics. Of particular interest in this work is the effect which NNN forces have on the cross section. The addition of NNN forces not only lowers the peak height but increases the cross section beyond 70 MeV by roughly 15%. Cross sections are computed using the Lorentz integral transform method.

Keywords

Cite

@article{arxiv.nucl-th/9911049,
  title  = {Photodisintegration of Three-Body Nuclei with Realistic 2N and 3N Forces},
  author = {Victor D. Efros and Winfried Leidemann and Giuseppina Orlandini and Edward L. Tomusiak},
  journal= {arXiv preprint arXiv:nucl-th/9911049},
  year   = {2009}
}

Comments

Results for Bonn potential with model Bonn rA instead of model rB. The Bonn rB results contained a small inexactness. After the correction it turned out that Bonn rA is more suited for our purpose because it leads to a binding energy of 8.15 MeV (about 0.25 MeV more than Bonn rB). In addition the results for the other realistic potentials models are improved at low energies (HH expansion was not completely convergent for the low-energy results). LaTeX, 8 pages, 4 ps figures