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Evidence for Gamow-Teller Decay of $^{78}$Ni Core from Beta-Delayed Neutron Emission Studies

The β-delayed neutron emission of Ga83,84 isotopes was studied using the neutron time-of-flight technique. The measured neutron energy spectra showed emission from states at excitation energies high above the neutron separation energy and previously not observed in the β decay of midmass nuclei. The...

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Detalles Bibliográficos
Autores principales: Madurga, M, Paulauskas, S  V, Grzywacz, R, Miller, D, Bardayan, D  W, Batchelder, J  C, Brewer, N  T, Cizewski, J  A, Fijałkowska, A, Gross, C  J, Howard, M  E, Ilyushkin, S  V, Manning, B, Matoš, M, Mendez, A  J, Miernik, K, Padgett, S  W, Peters, W  A, Rasco, B  C, Ratkiewicz, A, Rykaczewski, K  P, Stracener, D  W, Wang, E  H, Wolińska-Cichocka, M, Zganjar, E  F
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.117.092502
http://cds.cern.ch/record/2261345
Descripción
Sumario:The β-delayed neutron emission of Ga83,84 isotopes was studied using the neutron time-of-flight technique. The measured neutron energy spectra showed emission from states at excitation energies high above the neutron separation energy and previously not observed in the β decay of midmass nuclei. The large decay strength deduced from the observed intense neutron emission is a signature of Gamow-Teller transformation. This observation was interpreted as evidence for allowed β decay to Ni78 core-excited states in Ge83,84 favored by shell effects. We developed shell model calculations in the proton fpg9/2 and neutron extended fpg9/2+d5/2 valence space using realistic interactions that were used to understand measured β-decay lifetimes. We conclude that enhanced, concentrated β-decay strength for neutron-unbound states may be common for very neutron-rich nuclei. This leads to intense β-delayed high-energy neutron and strong multineutron emission probabilities that in turn affect astrophysical nucleosynthesis models.