Abstract

Excited states of 124Te were measured with the transfer reactions 123Te(d,p)124Te, 125Te(d,t)124Te and 123Sb(3He,d)124Te and with the inelastic scattering reaction ZUTe(p,p')lUTe at the Tandem Accelerator in Munich. Levels were obtained up to 3.5 MeV with energy resolutions of 3-6 keV. The lUTe(3,,3/)124Te reaction was studied at the S-DALINAC accelerator in Darmstadt for bremsstrahlung endpoint energies Eo = 3.5 and 5 MeV. The 123Te(n,T)lUTe reaction with thermal neutrons was investigated in Riga and in Dubna including ~,-~, coincidences. In Dubna the special method of sum coincidences was applied, analyzing the Y-3' cascades to the ground state and the first 2 + level. Based on these experiments a level scheme was constructed with states up to 4.5 MeV which is assumed to be complete up to 3 MeV for angular momenta J< 4h. A quasiparticle-phonon model calculation with a configuration space of up to three-phonon coupling permits a good description for many of the low-energy states. Transition probabilities, E2/M1 mixing ratios and branching ratios between these levels are generally well described. The quantitative reproduction indicates a two-phonon quadrupole-octupole coupled 1 - structure of the states most strongly excited in the (~,, T') reaction. The 2- member of the 2 + ®2 + ®3 i- septuplet is identified in the unusual decay cascade following thermal neutron capture. A candidate for a 2 + state with mixed symmetry structure is proposed.

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