Scaling Laws for Three-Body Nuclear Contacts
Abstract
Three-nucleon short-range correlations (3N-SRCs) represent one of the least understood manifestations of short-range nuclear dynamics. We investigate these correlations within the generalized contact formalism and compute three-body nuclear contacts using a mean-field description of the long-range component of the nuclear wave function. These contacts quantify the probability of finding correlated nucleon triplets at short distances and provide a natural extension of the contact formalism beyond nucleon pairs. We find that the He and H contacts exhibit significant isospin-symmetry breaking, analogous to that observed previously for two-body contacts. Motivated by the semi-empirical mass formula, we derive a simple scaling relation for three-body contacts and show that it accurately reproduces the calculated values across medium-mass and heavy nuclei. Our results reveal a systematic dependence of 3N-SRCs on nuclear mass and composition, suggesting that three-body contacts obey universal scaling patterns closely analogous to those governing short-range-correlated nucleon pairs.
Cite
@article{arxiv.2607.02126,
title = {Scaling Laws for Three-Body Nuclear Contacts},
author = {Raz Yankovich and Ehoud Pazy and Nir Barnea},
journal= {arXiv preprint arXiv:2607.02126},
year = {2026}
}
Comments
7 pages, 5 figures