Nucleon-charmonium interactions from lattice QCD
Abstract
We present a realistic lattice QCD study on low-energy - and - interactions based on (2+1) flavor configurations with nearly physical pion mass MeV. The interactions, extracted from the spacetime correlations of nucleon and charmonium system by using the HAL QCD method, are found to be attractive in all distances and possess a characteristic long-range tail consistent with the two-pion exchange potential. The resulting -wave scattering lengths are fm, fm, and fm for spin- -, spin- -, and spin- -, respectively. Our results are orders of magnitude larger than those from the photoproduction experiments assuming the vector meson dominance. Our findings may provide deeper understanding of the nonperturbative QCD phenomena ranging from the origin of nucleon mass to the in-medium mass modification as well as the properties of hidden-charm pentaquark states.
Cite
@article{arxiv.2410.22755,
title = {Nucleon-charmonium interactions from lattice QCD},
author = {Yan Lyu and Takumi Doi and Tetsuo Hatsuda and Takuya Sugiura},
journal= {arXiv preprint arXiv:2410.22755},
year = {2024}
}
Comments
v2, minor modifications are made to match with the published version