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arXiv:1602.06381·v1·Nuclear Theory

First-forbidden -decay rates, energy rates of -delayed neutrons and probability of -delayed neutron emissions for neutron-rich nickel isotopes

Jameel-Un Nabi · Necla Cakmak · Zafar Iftikhar

Abstract

First-forbidden (FF) transitions can play an important role in decreasing the calculated half-lives specially in environments where allowed Gamow-Teller (GT) transitions are unfavored. Of special mention is the case of neutron-rich nuclei where, due to phase-space amplification, FF transitions are much favored. We calculate the allowed GT transitions in various pn-QRPA models for even-even neutron-rich isotopes of nickel. Here we also study the effect of deformation on the calculated GT strengths. The FF transitions for even-even neutron-rich isotopes of nickel are calculated assuming the nuclei to be spherical. Later we take into account deformation of nuclei and calculate GT + unique FF transitions, stellar -decay rates, energy rate of -delayed neutrons and probability of -delayed neutron emissions. The calculated half-lives are in excellent agreement with measured ones and might contribute in speeding-up of the -matter flow.

Comments: 22 pages, 10 figures, 7 tables. arXiv admin note: text overlap with arXiv:1301.5225 by other authors

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