English

Self-consistent many-body approach to the electroproduction of hypernuclei

Nuclear Theory 2023-09-01 v2

Abstract

The electroproduction of selected pp- and sdsd-shell hypernuclei was studied within a many-body approach using realistic interactions between the constituent baryons. The cross sections were computed in distorted-wave impulse approximation using two elementary amplitudes for the electroproduction of the Λ\Lambda hyperon. The structure of the hypernuclei was investigated within the framework of the self-consistent Λ\Lambda-nucleon Tamm-Dancoff approach and its extension known as the Λ\Lambda-nucleon equation of motion phonon method. Use was made of the NNLOsat chiral potential plus the effective Nijmegen-F YN interaction. The method was first implemented on light nuclei for studying the available experimental data and establishing a relation to other approaches. After this proof test, it was adopted for predicting the electroproduction cross section of the hypernuclei  Λ40^{40}_{~\Lambda}K and  Λ48^{48}_{~\Lambda}K in view of the E12-15-008 experiment in preparation at JLab. On the ground of these predictions, appreciable effects on the spectra are expected to be induced by the YN interaction.

Keywords

Cite

@article{arxiv.2306.01308,
  title  = {Self-consistent many-body approach to the electroproduction of hypernuclei},
  author = {P. Bydžovský and D. Denisova and D. Petrellis and D. Skoupil and P. Veselý and G. De Gregorio and F. Knapp and N. Lo Iudice},
  journal= {arXiv preprint arXiv:2306.01308},
  year   = {2023}
}

Comments

10 pages, 7 figures (version 2); 11 pages, 9 figures (v1)