Classification of States in O(8) Proton-Neutron Pairing Model
arXiv:nucl-th/0503010 · doi:10.1016/j.nuclphysa.2005.09.011
Abstract
Isoscalar (T=0) plus isovector (T=1) pairing hamiltonian in LS-coupling, which is important for heavy N=Z nuclei, is solvable in terms of a O(8) algebra for some special values of the mixing parameter that measures the competition between T=0 and T=1 pairing. The O(8) algebra is generated, amongst others, by the and pair creation and annihilation operators . Shell model algebras, with only number conserving operators, that are complementary to the , and sub-algebras are identified. The problem of classification of states for a given number of nucleons (called `plethysm' problem in group theory), for these group chains is solved explicitly for states with O(8) seniority and 4. Using them, band structures in isospin space are identified for states with and 3.
52 pages, 12 tables
References in corpus (2)
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