English

Remeasuring the anomalously enhanced $B(E2; 2^+ \rightarrow 1^+)$ in $^8\mathrm{Li}$

Nuclear Experiment 2023-05-08 v2 Nuclear Theory

Abstract

The large reported E2E2 strength between the 2+2^+ ground state and 1+1^+ first excited state of \isotope[8]Li\isotope[8]{Li}, B(E2;2+1+)=55(15)e2\fm4B(E2; 2^+ \rightarrow 1^+)= 55(15)\,e^2\fm^4, presents a puzzle. Unlike in neighboring A=79A=7\text{--}9 isotopes, where enhanced E2E2 strengths may be understood to arise from deformation as rotational in-band transitions, the 2+1+2^+\rightarrow1^+ transition in 8^8Li 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-γ\gamma coincidences, yielding a revised B(E2;2+1+)B(E2; 2^+ \rightarrow 1^+) of 19(6+7)(2)19(^{+7}_{-6})(2)~e2^2fm4^4. 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.

Keywords

Cite

@article{arxiv.2109.06081,
  title  = {Remeasuring the anomalously enhanced $B(E2; 2^+ \rightarrow 1^+)$ in $^8\mathrm{Li}$},
  author = {S. L. Henderson and T. Ahn and P. J. Fasano and A. E. McCoy and S. Aguilar and D. T. Blankstein and L. Caves and A. C. Dombos and R. K. Grzywacz and K. L. Jones and S. Jin and R. Kelmar and J. J. Kolata and P. D. O'Malley and C. S. Reingold and A. Simon and K. Smith},
  journal= {arXiv preprint arXiv:2109.06081},
  year   = {2023}
}

Comments

21 pages, 5 figures

R2 v1 2026-06-24T05:55:27.376Z