Abstract
The nature of the high-lying final levels of the 96Ygs β decay, one of the three most important contributors to the high-energy reactor antineutrino spectrum, has been investigated in high-resolution γ-ray spectroscopy following the β decay as well as in a campaign of inelastic photon scattering experiments. The comprehensive approach establishes 1− levels associated with the Pygmy Dipole Resonance as high-lying final levels in the β decay. Branching ratios extracted from β decay complement photon scattering and allow the absolute E1 excitation strength to be determined for levels populated in both reactions. The combined data represents a comprehensive approach to the wavefunction of the 1− levels below the Qβ value, which are investigated in the Quasiparticle Phonon Model. The calculations reveal that the components populated in β decay contribute only with small amplitudes to the complex wavefunction of these 1− levels. A comparison of the β decay results to data from total absorption γ-ray spectroscopy demonstrates a good agreement between both measurements.
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Mashtakov, K. R., Ponomarev, V. Y., Scheck, M., Finch, S. W., Isaak, J., Zweidinger, M., … Tornow, W. (2021). Structure of high-lying levels populated in the 96Y →96Zr β decay. Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, 820. https://doi.org/10.1016/j.physletb.2021.136569
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