nuclear physics

Spectroscopic basis for short-range three-nucleon forces

arXiv:2607.26958

summary

The paper introduces a spectroscopic basis to classify subleading contact three‑nucleon forces by angular momentum and parity, and uses it to fit low‑energy constants from nucleon‑deuteron scattering data via a simple emulator.

Abstract

We introduce a spectroscopic basis for the subleading contact three-nucleon forces, which allows one to classify these interactions according to the total angular momentum and parity quantum numbers in a transparent way. Using this new basis, we explore the sensitivity of nucleon-deuteron observables to the three-nucleon short-range interactions. The low dimensionality of the variable-parameter space in the spectroscopic basis allows us to build a simple nucleon-deuteron scattering emulator using radial basis function interpolation. We perform exploratory fits of the subleading contact three-nucleon interactions and demonstrate that 9 of 13 low-energy constants can be reliably determined from elastic nucleon-deuteron scattering data.

26 pages, 19 figures, 5 tables

Topics & keywords

#three-nucleon forces#spectroscopic basis#nucleon-deuteron scattering#low-energy constants#contact interactionssubleading contact three-nucleon forcesangular momentum and parity classificationradial basis function interpolationelastic nucleon-deuteron scatteringlow-energy constant determination