English

Ab initio calculation of charge symmetry breaking in $A=7$ and $8$ $\Lambda$-hypernuclei

Nuclear Theory 2023-03-08 v3

Abstract

The separation energies of the isospin triplet Λ7He^7_\Lambda\mathrm{He}, Λ7Li^7_\Lambda \mathrm{Li^{*}}, Λ7^7_\LambdaBe, and the T=1/2T=1/2 doublet Λ8^8_\LambdaLi, Λ8^8_\LambdaBe are investigated within the no-core shell model. Calculations are performed based on a hyperon-nucleon potential derived from chiral effective field theory at next-to-leading order. The potential includes the leading charge-symmetry breaking (CSB) interaction in the Λ\Lambda N channel, whose strength has been fixed to the experimentally known difference of the Λ\Lambda separation energies of the mirror hypernuclei Λ4He^4_\Lambda \mathrm{He} and Λ4H^4_\Lambda \mathrm{H}. It turns out that the CSB predicted for the A=7A=7 systems is small and agrees with the splittings deduced from the empirical binding energies within the experimental uncertainty. In case of the A=8A=8 doublet, the computed CSB is somewhat larger than the available experimental value. Using other experimental input for A=4A=4 can change this prediction moving it closer to experiment.

Keywords

Cite

@article{arxiv.2210.03387,
  title  = {Ab initio calculation of charge symmetry breaking in $A=7$ and $8$ $\Lambda$-hypernuclei},
  author = {Hoai Le and Johann Haidenbauer and Ulf-G. Meißner and Andreas Nogga},
  journal= {arXiv preprint arXiv:2210.03387},
  year   = {2023}
}

Comments

11 pages, 4 tables