Di-nucleons do not form bound states at heavy pion mass
arXiv:2505.05547 · doi:10.1103/d2hg-h6d4
Abstract
We perform a high-statistics lattice QCD calculation of the low-energy two-nucleon scattering amplitudes. In order to address discrepancies in the literature, the calculation is performed at a heavy pion mass in the limit that the light quark masses are equal to the physical strange quark mass, MeV. Using a state-of-the-art momentum space method, we rule out the presence of a bound di-nucleon in both the isospin 0 (deuteron) and 1 (di-neutron) channels, in contrast with many previous results that made use of compact hexaquark creation operators. In order to diagnose the discrepancy, we add such hexaquark interpolating operators to our basis and find that they do not affect the determination of the two-nucleon finite volume spectrum, and thus they do not couple to deeply bound di-nucleons that are missed by the momentum-space operators. Further, we perform a high-statistics calculation of the HAL QCD potential on the same gauge ensembles and find qualitative agreement with our main results. We conclude that di-nucleons do not form bound states at heavy pion masses and that previous identification of deeply bound di-nucleons must have arisen from a misidentification of the spectrum from off-diagonal elements of a correlation function.
v2: small modifications suggested by the referee, consistent with published version; v1: 22 pages, 25 figures + appendices and more figures
References in corpus (12)
- Nuclear Force from Lattice QCD
- On the generalized eigenvalue method for energies and matrix elements in lattice field theory
- A novel quark-field creation operator construction for hadronic physics in lattice QCD
- Simulation of QCD with N_f=2+1 flavors of non-perturbatively improved Wilson fermions
- Light Nuclei and Hypernuclei from Quantum Chromodynamics in the Limit of SU(3) Flavor Symmetry
- Nuclear Physics from Lattice QCD
- Baryon-Baryon Interactions and Spin-Flavor Symmetry from Lattice Quantum Chromodynamics
- BB Potentials in Quenched Lattice QCD
- A variational study of two-nucleon systems with lattice QCD
- Hadronic Interactions from Lattice QCD
- On the equivalence of Prony and Lanczos methods for Euclidean correlation functions
- Application of Laplace filters to the analysis of lattice time correlators