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- W2029376593 abstract "High-spin states of the transitional nucleus $_{47}^{101}mathrm{Ag}_{54}$ have been studied up to spin J=41/2 with the reaction $^{70}mathrm{Ge}$${(}^{35}$Cl,2p2n), using ensuremath{gamma}-ensuremath{gamma} coincidence and ensuremath{gamma}-ray angular-distribution measurements. The low-spin states of this nucleus involve single-particle excitations, with little evidence of quadrupole collectivity. At high spins, a coupled band structure has been identified, consisting of a cascade of ensuremath{Delta}J=1 transitions with stretched E2 crossover transitions, similar to high-spin negative-parity bands observed in the heavier odd Ag nuclei. Detailed cranked Nilsson-Strutinski calculations are presented, which predict deformed rotational states based on configurations involving ensuremath{nu}${mathit{h}}_{11/2}$ excitations, and agree well with the energy levels of these high-spin negative-parity band structures. The changing nature of collectivity in these nuclei above the N=50 shell closure is discussed." @default.
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- W2029376593 date "1992-04-01" @default.
- W2029376593 modified "2023-09-27" @default.
- W2029376593 title "Transitional nucleusAg101: Spin-stabilized deformation in odd Ag isotopes" @default.
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- W2029376593 doi "https://doi.org/10.1103/physrevc.45.1564" @default.
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