English

Application of the extended P+QQ force model to $N \approx Z$ fp shell nuclei

Nuclear Theory 2016-09-08 v1

Abstract

To study collective motion, the extended pairing plus QQQQ force model proposed recently is applied to AA=46, 48 and 50 nuclei in the fpfp shell region. Exact shell model calculations in the truncated model space (f7/2,p3/2,p1/2)(f_{7/2},p_{3/2},p_{1/2}) prove the usefulness of the interaction. The simple model with the pairing plus quadrupole pairing plus QQQQ force and JJ-independent isoscalar proton-neutron force reproduces unexpectedly well observed binding energies, energy levels of collective (yrast) states and reduced E2E2 transition probabilities in 46^{46}Ti, 46^{46}V, 48^{48}V, 48^{48}Cr, 50^{50}Cr and 50^{50}Mn. The correspondence between theory and experiment is almost comparable to that attained by the full fpfp shell model calculations with realistic effective interactions. Some predictions are made for energy levels and variations of B(E2)B(E2) in the yrast bands, in these nuclei. Characteristics of the interaction are investigated by comparing with the realistic effective interactions.

Keywords

Cite

@article{arxiv.nucl-th/9910068,
  title  = {Application of the extended P+QQ force model to $N \approx Z$ fp shell nuclei},
  author = {M. Hasegawa and K. Kaneko and S. Tazaki},
  journal= {arXiv preprint arXiv:nucl-th/9910068},
  year   = {2016}
}

Comments

34 pages including 14 figures