arXiv:2109.06081·v2·Nuclear Experiment
Remeasuring the anomalously enhanced in
S. L. Henderson · T. Ahn · P. J. Fasano · A. E. McCoy · S. Aguilar · D. T. Blankstein · L. Caves · A. C. Dombos · R. K. Grzywacz · K. L. Jones · S. Jin · R. Kelmar
Abstract
The large reported strength between the ground state and first excited state of , , presents a puzzle. Unlike in neighboring isotopes, where enhanced strengths may be understood to arise from deformation as rotational in-band transitions, the transition in Li cannot be understood in any simple way as a rotational in-band transition. Moreover, the reported strength exceeds \textit{ab initio} predictions by an order of magnitude. In light of this discrepancy, we revisited the Coulomb excitation measurement of this strength, now using particle- coincidences, yielding a revised of ~efm. We explore how this value compares to what might be expected in the limits of rotational models. While the present value is about a factor of three smaller than previously reported, it remains anomalously enhanced.
Comments: 21 pages, 5 figures