Abstract

The magnetic moments of the ${2}_{1}^{+}$ states of $^{120\ensuremath{-}130}\mathrm{Te}$ isotopes have been measured by the thin-foil transient field technique. The resulting magnetic moments are discussed in the light of predictions of the vibrational, the quasiparticle, and the interacting boson approximation models.NUCLEAR REACTIONS $^{120\ensuremath{-}130}\mathrm{Te}$ ($^{32}\mathrm{S}$, $^{32}\mathrm{S}$\ensuremath{'}) $^{120\ensuremath{-}130}\mathrm{Te}$(${2}_{1}^{+}$); ${E}_{S}\ensuremath{\sim}80$ MeV; enriched targets; measured $W(\ensuremath{\theta},B,\ensuremath{\infty})$ through polarized iron; deduced $g({2}_{1}^{+})$.

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