Multi-nucleon matrix elements on the lattice with the Feynman-Hellmann theorem

Nabil Humphrey, Kadir Utku Can, Roger Horsley, Paul E.L. Rakow, G. Schierholz, H. Stüben, Ross D Young, J. M. Zanotti · arXiv (Cornell University) · 2025

This work presents the first calculation of the lowest moment of the forward Compton structure function $\mathcal{F}_2$ for a multi-nucleon deuteron-like state using Feynman-Hellmann lattice QCD techniques. Using this result as a prototypical example, we chart a course for the systematic study of multi-nucleon structure by building on techniques developed to optimise the computation of the factorially increasing number of Wick contraction terms required to calculate multi-nucleon matrix elements via lattice QCD.

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