English

Leading order relativistic hyperon-nucleon interactions in chiral effective field theory

Nuclear Theory 2018-01-08 v2 High Energy Physics - Phenomenology

Abstract

We apply a recently proposed covariant power counting in nucleon-nucleon interactions to study strangeness S=1S=-1 ΛNΣN\Lambda N-\Sigma N interactions in chiral effective field theory. At leading order, Lorentz invariance introduces 12 low energy constants, in contrast to the heavy baryon approach, where only five appear. The Kadyshevsky equation is adopted to resum the potential in order to account for the non-perturbative nature of hyperon-nucleon interactions. A fit to the 3636 hyperon-nucleon scattering data points yields χ216\chi^2\simeq 16, which is comparable with the sophisticated phenomenological models and the next-to-leading order heavy baryon approach. However, one cannot achieve a simultaneous description of the nucleon-nucleon phase shifts and strangeness S=1S=-1 hyperon-nucleon scattering data at leading order.

Keywords

Cite

@article{arxiv.1612.08482,
  title  = {Leading order relativistic hyperon-nucleon interactions in chiral effective field theory},
  author = {Kai-Wen Li and Xiu-Lei Ren and Li-Sheng Geng and Bing-Wei Long},
  journal= {arXiv preprint arXiv:1612.08482},
  year   = {2018}
}

Comments

14 pages, 8 figures