Ab initio calculation of charge symmetry breaking in $A=7$ and $8$ $\Lambda$-hypernuclei
Abstract
The separation energies of the isospin triplet , , Be, and the doublet Li, Be 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 N channel, whose strength has been fixed to the experimentally known difference of the separation energies of the mirror hypernuclei and . It turns out that the CSB predicted for the systems is small and agrees with the splittings deduced from the empirical binding energies within the experimental uncertainty. In case of the doublet, the computed CSB is somewhat larger than the available experimental value. Using other experimental input for 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