Statistical and non-statistical γ-decay properties of 64Zn
A. C. Larsen, M. Guttormsen, T. K. Eriksen, G. M. Tveten, H. Utsunomiya, J. K. Dahl, N. Shimizu, T. Ari-izumi, F. L. Bello Garrote, L. T. Bell, M. M. Bjørøen, F. W. Furmyr, D. Gjestvang, A. Görgen, V. W. Ingeberg, K. C. W. Li, E. Lima, M. Markova, E. F. Matthews, A. H. Mjøs, S. Miyamoto, V. Modamio, T. Renstrøm, E. Sahin, S. Siem, M. Wiedeking
Abstract
We present a study on the γ-decay properties of 64Zn using the Oslo method on 64Zn(p,p γ) data combined with 64Zn(γ,n) cross-section measurements at the NewSUBARU facility. With the Oslo method, we have measured the γ-ray strength function (γSF) and the nuclear level density (NLD) below the neutron threshold. We observe that the NLD trend in the quasi-continuum region of 64Zn is best characterized by a constant-temperature-like model. %with temperature parameter T CT=1.21(5) MeV. Surprisingly, we find that γ-ray transitions from the quasi-continuum decaying directly to the 0+ ground state seem to be strongly hindered with a hindrance factor of κ≈ 0.5, which could be an indication of non-statistical effects in the ground-state decay due to, e.g., differences in nuclear shapes. For γ energies above the neutron separation energy, the NewSUBARU (γ, n) data set probes a significant part of the giant dipole resonance. Furthermore, we find that the Oslo-method γSF shows a rather smooth behavior, with a clear low-energy enhancement (LEE) for Eγ < 4 MeV.
Create a lesson
Related papers
Direct measurement of the in-medium η mass spectrum through the γγ decay channel
Y. Matsumura, N. Muramatsu, T. A. Hashimoto et al.
STAR Highlights II: Study of Small Systems and the Search for New, Exotic Physics
Jiangyong Jia
Cluster emission and its impact on the r-process nucleosynthesis
Natalia Thomas, Silvia Bara, Thomas Elias Cocolios et al.
Core Breaking at Low Spin in 68Zn from Nuclear Resonance Fluorescence
S. R. Johnson, R. V. F. Janssens, B. A. Brown et al.
Isoscalar Giant Resonances in the even-A Pd Isotopes
J. Arroyo, U. Garg, T. Furuno et al.
Efficient production of 229m,gTh via neutron capture in VUV-transparent crystals
Zhong-yi Chen, Hao-yang Lan, Di Wu et al.