Enhanced low-energy $\gamma$-decay strength of $^{70}$Ni and its robustness within the shell model
Abstract
Neutron-capture reactions on very neutron-rich nuclei are essential for heavy-element nucleosynthesis through the rapid neutron-capture process, now shown to take place in neutron-star merger events. For these exotic nuclei, radiative neutron capture is extremely sensitive to their -emission probability at very low energies. In this work, we present measurements of the -decay strength of Ni over the wide range MeV. A significant enhancement is found in the -decay strength for transitions with MeV. At present, this is the most neutron-rich nucleus displaying this feature, proving that this phenomenon is not restricted to stable nuclei. We have performed -strength calculations within the quasiparticle time-blocking approximation, which describe our data above MeV very well. Moreover, large-scale shell-model calculations indicate an nature of the low-energy strength. This turns out to be remarkably robust with respect to the choice of interaction, truncation and model space, and we predict its presence in the whole isotopic chain, in particular the neutron-rich .
Keywords
Cite
@article{arxiv.1805.00856,
title = {Enhanced low-energy $\gamma$-decay strength of $^{70}$Ni and its robustness within the shell model},
author = {A. C. Larsen and J. E. Midtbø and M. Guttormsen and T. Renstrøm and S. N. Liddick and A. Spyrou and S. Karampagia and B. A. Brown and O. Achakovskiy and S. Kamerdzhiev and D. L. Bleuel and A. Couture and L. Crespo Campo and B. P. Crider and A. C. Dombos and R. Lewis and S. Mosby and F. Naqvi and G. Perdikakis and C. J. Prokop and S. J. Quinn and S. Siem},
journal= {arXiv preprint arXiv:1805.00856},
year = {2018}
}
Comments
9 pages, 9 figures