Properties of the predicted super-deformed band in ^{32}S
arXiv:nucl-th/0006013 · doi:10.1103/PhysRevC.62.054308
Abstract
Properties like the excitation energy with respect to the ground state, moments of inertia, B(E2) transition probabilities and stability against quadrupole fluctuations at low spin of the predicted superdeformed band of ^{32}S are studied with the Gogny force D1S using the angular momentum projected generator coordinate method for the axially symmetric quadrupole moment. The Self Consistent Cranking method is also used to describe the superdeformed rotational band. In addition, properties of some collective normal deformed states are discussed.
7 pages, 3 figures
References in corpus (3)
- Angular momentum projected analysis of Quadrupole Collectivity in \protect(^{30,32,34}Mg\protect) and \protect(^{32,34,36,38}Si\protect) with the Gogny interaction
- High-spin yrast structure of 32S suggested by symmetry-unrestricted, cranked Hartree-Fock calculations
- Superdeformed bands in 32S and neighboring nuclei predicted within the Hartree-Fock method
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