English

Leading order relativistic chiral nucleon-nucleon interaction

Nuclear Theory 2017-11-28 v3 High Energy Physics - Phenomenology

Abstract

Motivated by the successes of relativistic theories in studies of atomic/molecular and nuclear systems and the need for a relativistic chiral force in relativistic nuclear structure studies, we explore a new relativistic scheme to construct the nucleon-nucleon interaction in the framework of covariant chiral effective field theory. The chiral interaction is formulated up to leading order with covariant power counting and a Lorentz invariant chiral Lagrangian. We find that the relativistic scheme induces all six spin operators needed to describe the nuclear force. A detailed investigation of the partial wave potentials shows a better description of the 1S0^1S_0 and 3P0^3P_0 phase shifts than the leading order Weinberg approach, and similar to that of the next-to-leading order Weinberg approach. For the other partial waves with angular momenta J1J\geq 1, the relativistic results are almost the same as their leading order non-relativistic counterparts.

Keywords

Cite

@article{arxiv.1611.08475,
  title  = {Leading order relativistic chiral nucleon-nucleon interaction},
  author = {Xiu-Lei Ren and Kai-Wen Li and Li-Sheng Geng and Bing-Wei Long and Peter Ring and Jie Meng},
  journal= {arXiv preprint arXiv:1611.08475},
  year   = {2017}
}

Comments

12 pages, 4 figures; version to appear in Chinese Physics C

R2 v1 2026-06-22T17:04:18.380Z