English

Light nuclei with semilocal momentum-space regularized chiral interactions up to third order

Nuclear Theory 2021-05-12 v2

Abstract

We present a systematic investigation of few-nucleon systems and light nuclei using the current LENPIC interactions comprising semilocal momentum-space regularized two- and three-nucleon forces up to third chiral order (N2^2LO). Following our earlier study utilizing the coordinate-space regularized interactions, the two low-energy constants entering the three-body force are determined from the triton binding energy and the differential cross section minimum in elastic nucleon-deuteron scattering. Predictions are made for selected observables in elastic nucleon-deuteron scattering and in the deuteron breakup reactions, for properties of the A=3A=3 and A=4A=4 nuclei, and for spectra of pp-shell nuclei up to A=16A = 16. A comprehensive error analysis is performed including an estimation of correlated truncation uncertainties for nuclear spectra. The obtained predictions are generally found to agree with experimental data within errors. Similar to the coordinate-space regularized chiral interactions at the same order, a systematic overbinding of heavier nuclei is observed, which sets in for A10A \sim 10 and increases with AA.

Keywords

Cite

@article{arxiv.2012.12396,
  title  = {Light nuclei with semilocal momentum-space regularized chiral interactions up to third order},
  author = {P. Maris and E. Epelbaum and R. J. Furnstahl and J. Golak and K. Hebeler and T. Hüther and H. Kamada and H. Krebs and Ulf-G. Meißner and J. A. Melendez and A. Nogga and P. Reinert and R. Roth and R. Skibiński and V. Soloviov and K. Topolnicki and J. P. Vary and Yu. Volkotrub and H. Witała and T. Wolfgruber},
  journal= {arXiv preprint arXiv:2012.12396},
  year   = {2021}
}

Comments

21 pages, 13 figures, 5 tables, added reference

R2 v1 2026-06-23T21:15:01.883Z