High-spin states in the nucleiY91andNb95
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Abstract
The positive-parity yrast states in the $^{91}\mathrm{Y}$ and $^{95}\mathrm{Nb}$ nuclei have been studied by \ensuremath{\gamma}-ray spectroscopy following heavy-ion-induced fusion-evaporation reactions. The lowest-lying transitions in these structures have been assigned via the $p2n$ channel of the reactions of $^{12}\mathrm{C}$ (38 MeV) and $^{16}\mathrm{O}$ (48 MeV) beams with a $^{82}\mathrm{Se}$ target, studied at the Bucharest Tandem accelerator. More detailed level schemes have been determined subsequently in a study performed with the GASP array of the inverse reactions produced by a $^{82}\mathrm{Se}$ (470 MeV) beam from the Legnaro Tandem-LINAC accelerator with oxygen and possibly carbon contaminants of a $^{192}\mathrm{Os}$ target. The observed level schemes are compared with local systematics and shell-model calculations.
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