Nuclear level densities and γ-ray strength functions have been extracted for 59,60Ni, using the Oslo method on data sets from the 60Ni(3He,3He′γ)60Ni and 60Ni(3He,αγ)59Ni reactions. Above the neutron separation energy, Sn, we have measured the γ-ray strength functions for 61Ni and 60Ni in photoneutron experiments. The low-energy part of the 59,60Ni γ-ray strength functions show an increase for decreasing γ energies. The experimental γ-ray strength functions are compared with M1γ-ray strength functions calculated within the shell model. The E1γ-ray strength function of 60Ni has been calculated using the QTBA framework. The QTBA calculations describe the data above Eγ≈ 7 MeV, while the shell-model calculations agree qualitatively with the low energy part of the γ-ray strength function. Hence, we give a plausible explanation of the observed shape of the γ-decay strength.
@article{arxiv.1804.08086,
title = {Experimental $\gamma$-decay strength in $^{59, 60}$Ni compared with microscopic calculations},
author = {T. Renstrøm and G. M. Tveten and J. E. Midtbø and H. Utsunomiya and O. Achakovskiy and S. Kamerdzhiev and B. Alex Brown and A. Avdeenkov and T. Ari-izumi and A. Görgen and S. M. Grimes and M. Guttormsen and T. W. Hagen and V. W. Ingeberg and S. Katayama and B. V. Kheswa and A. C. Larsen and Y. -W. Lui and H. -T. Nyhus and S. Siem and D. Symochko and D. Takenaka and A. V. Voinov},
journal= {arXiv preprint arXiv:1804.08086},
year = {2018}
}