arXiv:nucl-th/0511035·v1·Nuclear Theory
Nuclear isomers: structures and applications
Yang Sun🇺🇸 · Michael Wiescher🇺🇸 · Ani Aprahamian🇺🇸 · Jacob L. Fisker🇺🇸
Abstract
Isomeric states in the nuclei along the rapid proton capture process path are studied by the projected shell model. Emphasis is given to two waiting point nuclei Se-68 and Kr-72 that are characterized by shape coexistence. Energy surface calculations indicate that the ground state of these nuclei corresponds to an oblate-deformed minimum, while the lowest state at the prolate-deformed minimum can be considered as a shape isomer. Due to occupation of the orbitals with large K-components, states built upon two-quasiparticle excitations at the oblate-deformed minimum may form high -isomers. The impact of the isomer states on isotopic abundance in X-ray bursts is studied in a multi-mass-zone X-ray burst model by assuming an upper-lower limit approach.
Comments: 5 pages, 4 figures, from the CGS-12 Conference on Capture Gamma-Ray Spectroscopy and Related Topics, submitted to AIP proceedings