English

Particle alignments and shape change in $^{66}$Ge and $^{68}$Ge

Nuclear Theory 2016-09-08 v3

Abstract

The structure of the NZN \approx Z nuclei 66^{66}Ge and 68^{68}Ge is studied by the shell model on a spherical basis. The calculations with an extended P+QQP+QQ Hamiltonian in the configuration space (2p3/22p_{3/2}, 1f5/21f_{5/2}, 2p1/22p_{1/2}, 1g9/21g_{9/2}) succeed in reproducing experimental energy levels, moments of inertia and QQ moments in Ge isotopes. Using the reliable wave functions, this paper investigates particle alignments and nuclear shapes in 66^{66}Ge and 68^{68}Ge. It is shown that structural changes in the four sequences of the positive- and negative-parity yrast states with even JJ and odd JJ are caused by various types of particle alignments in the g9/2g_{9/2} orbit. The nuclear shape is investigated by calculating spectroscopic QQ moments of the first and second 2+2^+ states, and moreover the triaxiality is examined by the constrained Hatree-Fock method. The changes of the first band crossing and the nuclear deformation depending on the neutron number are discussed.

Keywords

Cite

@article{arxiv.nucl-th/0408063,
  title  = {Particle alignments and shape change in $^{66}$Ge and $^{68}$Ge},
  author = {M. Hasegawa and K. Kaneko and T. Mizusaki},
  journal= {arXiv preprint arXiv:nucl-th/0408063},
  year   = {2016}
}

Comments

18 pages, 21 figures; submitted to Phys. Rev. C