Semilocal momentum-space regularized chiral two-nucleon potentials up to fifth order
P. Reinert, H. Krebs, E. Epelbaum

TL;DR
This paper introduces new semilocal chiral two-nucleon potentials up to fifth order, featuring a simplified regularization scheme, improved fit to scattering data, and reduced parameters, outperforming previous models in accuracy.
Contribution
The paper presents a novel semilocal regularization approach, simplifies contact interactions, and achieves superior fit quality with fewer parameters compared to earlier chiral potentials.
Findings
Achieves an outstanding fit to scattering data below pion production threshold.
Produces softer, more perturbative interactions than previous potentials.
Reduces the number of adjustable parameters by about 40%.
Abstract
We introduce new semilocal two-nucleon potentials up to fifth order in the chiral expansion. We employ a simple regularization approach for the pion-exchange contributions which (i) maintains the long-range part of the interaction, (ii) is implemented in momentum space and (iii) can be straightforwardly applied to regularize many-body forces and current operators. We discuss in detail the two-nucleon contact interactions at fourth order and demonstrate that three terms out of fifteen used in previous calculations can be eliminated via suitably chosen unitary transformations. The removal of the redundant contact terms results in a drastic simplification of the fits to scattering data and leads to interactions which are much softer (i.e. more perturbative) than our recent semilocal coordinate-space regularized potentials. Using the pion-nucleon low-energy constants from matching…
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