English

Coriolis coupling effects in proton-pickup spectroscopic factors from $^{12}$B

Nuclear Theory 2021-03-17 v1

Abstract

Spectroscopic factors to low-lying negative-parity states in 11^{11}Be extracted from the 12^{12}B(dd,3^3He)11^{11}Be proton-removal reaction are interpreted within the rotational model. Earlier predictions of the pp-wave proton removal strengths in the strong coupling limit of the Nilsson model underestimated the spectroscopic factors to the 3/213/2^-_1 and 5/215/2^-_1 states and suggested that deviations in the 1+1^+ ground state of the odd-odd 12^{12}B due to Coriolis coupling should be further explored. In this work we use the Particle Rotor Model to take into account these effects and obtain a good description of the level scheme in 11^{11}B, with a moderate KK-mixing of the proton Nilsson levels [110]1/2 and [101]3/2. This mixing, present in the 1+1^+ bandhead of 12^{12}B, is key to explaining the proton pickup data.

Cite

@article{arxiv.2012.04722,
  title  = {Coriolis coupling effects in proton-pickup spectroscopic factors from $^{12}$B},
  author = {A. O. Macchiavelli and H. L. Crawford and R. M. Clark and P. Fallon and I. Y. Lee and C. Morse and C. M. Campbell and M. Cromaz and C. Santamaria and J. Chen and C. R. Hoffman and B. P. Kay},
  journal= {arXiv preprint arXiv:2012.04722},
  year   = {2021}
}

Comments

5 Pages, 2 Figures, to be submitted to Phys. Rev. C

R2 v1 2026-06-23T20:49:44.475Z