Constraints on the -neutron interaction from charge symmetry breaking in the -- hypernuclei
arXiv:2107.01134 · doi:10.1007/s00601-021-01684-3
Abstract
We utilize the experimentally known difference of the separation energies of the mirror hypernuclei and to constrain the -neutron interaction. We include the leading charge-symmetry breaking (CSB) interaction into our hyperon-nucleon interaction derived within chiral effective field theory at next-to-leading order. In particular, we determine the strength of the two arising CSB contact terms by a fit to the differences of the separation energies of these hypernuclei in the and states, respectively. By construction, the resulting interaction describes all low energy hyperon-nucleon scattering data, the hypertriton and the CSB in - accurately. This allows us to provide first predictions for the n scattering lengths, based solely on available hypernuclear data.
19 pages, 2 figures, to be submitted to special issue of few-body systems "Celebrating 30 years of Steven Weinberg's papers on Nuclear Forces from Chiral Lagrangians"
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- Measurement of and binding energy in Au+Au collisions at = 3 GeV
- What Can Possibly Go Wrong?
- Ab initio calculation of charge symmetry breaking in and -hypernuclei
- In-medium isospin impurity from charge symmetry breaking in the mirror hypernuclei
- First measurement of A = 4 (anti)hypernuclei at the LHC
- Status of the hyperon-nucleon interaction in chiral effective field theory
- Charge symmetry breaking in hypernuclei within RMF model
- First measurement of and cross sections via -nucleus scattering at an electron-positron collider
- reaction for studying charge symmetry breaking in the interaction
- reaction with in-flight kaons for studying the interaction
- Properties of hyperons in nuclear matter from chiral hyperon-nucleon interactions at next-to-next-to-leading order