Abstract

High-spin states of the even-even 116Te were studied by in-beam g-ray spectroscopy using the 103Rh (16O, p2n) fusion-evaporation reaction at a beam energy of 80 MeV. γ-γ coincidence and γ-γ angular correlation analyses were employed for determining the level scheme of 116Te. Levels up to Iπ = 27− and several new states were established. We identified two rotational bands with negative parity, one of which was newly established in the present work. We suggest that such two bands be associated with two proton [(g7/2) ⊗ (h11/2)] and two neutron [(d5/2) ⊗ (h11/2)] configurations, respectively.

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