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Gamma-ray spectroscopy of superdeformed states in the nucleus<sup>152</sup>Dy

M. A. BentleySERC Daresbury Lab., Warrington, UKAndrew AldersonSERC Daresbury Lab., Warrington, UKG. C. BallSERC Daresbury Lab., Warrington, UKH. W. Cranmer-GordonSERC Daresbury Lab., Warrington, UKP. FallonSERC Daresbury Lab., Warrington, UKB. FantSERC Daresbury Lab., Warrington, UKP.D. ForsythSERC Daresbury Lab., Warrington, UKB. HerskindSERC Daresbury Lab., Warrington, UKD. HoweSERC Daresbury Lab., Warrington, UKC. A. KalfasSERC Daresbury Lab., Warrington, UKA.R. MokhtarSERC Daresbury Lab., Warrington, UKJ. D. MorrisonSERC Daresbury Lab., Warrington, UKA H NelsonSERC Daresbury Lab., Warrington, UKB. M. NyakóSERC Daresbury Lab., Warrington, UKK. SchifferSERC Daresbury Lab., Warrington, UKJ. F. Sharpey‐SchaferSERC Daresbury Lab., Warrington, UKJ. SimpsonSERC Daresbury Lab., Warrington, UKG. SlettenSERC Daresbury Lab., Warrington, UKP.J. TwinSERC Daresbury Lab., Warrington, UK
1991en
ABI

Annotatsiya

A gamma -ray spectroscopic study of the high spin states of the nucleus 152Dy has been performed using the reaction 108Pd(48Ca,4n)152Dy at a bombarding energy of 205 MeV. Gamma rays were detected using the TESSA3 multi-detector array. A set of discrete-line states forming a rotational band has been observed in the data and has been shown to extend up to a spin of around 60h(cross) and an excitation energy of about 30 MeV. The gamma -ray energy data are consistent with dynamic moment of inertia F(2) of (85+or-3)h(cross)2 MeV-1, indicating a large quadrupole deformation. A measurement of the collectivity of the band has been made using the Doppler shift attenuation method, with the data for the lower spin states yielding a quadrupole moment of Q0=(18+or-3) e b.

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