English

Configuration mixing in low-lying spectra of carbon hypernuclei

Nuclear Theory 2017-05-16 v1 Nuclear Experiment

Abstract

We perform a coupled-channels study of the low-lying states in                      Λ13,15,17,19^{13,15,17,19}_{~~~~~~~~~~~~~~~~~~~~~\Lambda}C with a covariant energy density functional based microscopic particle-core coupling model. The energy differences of 1/21/2^- and 3/23/2^- states in Λ13^{13}_\LambdaC and Λ15^{15}_\LambdaC are predicted to be 0.25 MeV and 0.34 MeV, respectively. We find that configuration mixings in the 1/21/2^- and 3/23/2^- states of Λ15^{15}_\LambdaC are the weakest among those of                      Λ13,15,17,19^{13,15,17,19}_{~~~~~~~~~~~~~~~~~~~~~\Lambda}C. It indicates that Λ15^{15}_\LambdaC provides the best candidate among the carbon hypernuclei to study the spin-orbit splitting of pΛp_\Lambda hyperon state.

Keywords

Cite

@article{arxiv.1705.04904,
  title  = {Configuration mixing in low-lying spectra of carbon hypernuclei},
  author = {H. Xia and H. Mei and J. M. Yao},
  journal= {arXiv preprint arXiv:1705.04904},
  year   = {2017}
}

Comments

5 pages with two figures and three tables, SCIENCE CHINA Physics, Mechanics & Astronomy, 2017