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- W2203543537 abstract "Excited levels of ${}^{128}$Te to 3.3 in MeV excitation have been studied using $ensuremath{gamma}$-ray spectroscopy following inelastic scattering of accelerator-produced neutrons. Spectroscopic information, including transition energies, level spins, $E$2/$M$1 multipole-mixing ratios, and $ensuremath{gamma}$-ray branching ratios, was determined from $ensuremath{gamma}$-ray excitation functions measured from ${E}_{n}=2.15$--3.33 MeV in 90-keV increments, $ensuremath{gamma}$-ray angular distributions measured at ${E}_{n}=2.2$, 2.8, and 3.3 MeV, and $ensuremath{gamma}$$ensuremath{gamma}$ coincidences measured at ${E}_{n}=3.6$ MeV. Lifetimes of levels in ${}^{128}$Te were deduced using Doppler-shift attenuation techniques. Absolute transition probabilities were determined for many levels and compared to interacting boson model and particle-core coupling model calculations to identify few particle and collective structures; states exhibiting the decay characteristics expected for two-phonon, mixed-symmetry, and quadrupole-octupole coupled states are identified." @default.
- W2203543537 created "2016-06-24" @default.
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- W2203543537 date "2012-11-15" @default.
- W2203543537 modified "2023-10-05" @default.
- W2203543537 title "Collective and two-quasiparticle excitations in128Te" @default.
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- W2203543537 doi "https://doi.org/10.1103/physrevc.86.054308" @default.
- W2203543537 hasPublicationYear "2012" @default.
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