Abstract

High-spin states in the neutron-deficient isotope 104Cd were populated using the 50Cr(58Ni,4p)104Cd reaction at a beam energy of 250 MeV. The level scheme has been extended using triple γ-ray coincidences to a spin of 29ℏ and an excitation energy of 18.2 MeV. Several collective structures involving the excitation of h11/2 neutrons have been observed to spins approaching 30ℏ. The high-spin structure has been compared to the results of cranked Nilsson–Strutinsky calculations.

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