High-spin states inZr92−96nuclei
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Abstract
The $^{92\text{\ensuremath{-}}96}\mathrm{Zr}$ nuclei were produced as fission fragments following the fusion reactions $^{28}\mathrm{Si}+^{176}\mathrm{Yb}$ and $^{31}\mathrm{P}+^{176}\mathrm{Yb}$ at 145 and 152 MeV bombarding energy, respectively. Prompt $\ensuremath{\gamma}$ rays emitted in the two reactions were detected with the EUROGAM II and EUROBALL IV arrays. Sequences of $\ensuremath{\gamma}$-ray transitions observed in coincidence were newly assigned to $^{93\text{\ensuremath{-}}96}\mathrm{Zr}$. The previously known level schemes have been extended to higher excitation energies and higher spins. The experimental results are discussed in the framework of shell-model calculations with $^{88}\mathrm{Sr}$ assumed to be an inert core and the valence protons and neutrons filling the $\ensuremath{\pi}(2{p}_{1/2},1{g}_{9/2})$ and $\ensuremath{\nu}(2{d}_{5/2},3{s}_{1/2})$ orbitals.
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