First lattice study of low-energy charmonium-hadron interaction
Kazuo Yokokawa, Shoichi Sasaki, Tetsuo Hatsuda, Arata Hayashigaki

TL;DR
This study uses lattice QCD simulations to calculate the scattering lengths of charmonia with light hadrons, revealing attractive interactions and providing new quantitative insights into these low-energy hadron interactions.
Contribution
First lattice QCD calculation of charmonium-light hadron scattering lengths, demonstrating attractive interactions across multiple channels with volume dependence analysis.
Findings
Attractive interactions found in all channels studied.
Quantitative scattering lengths for J/psi and eta_c with pi, rho, and N.
Volume dependence confirms expected lattice behavior.
Abstract
We study the scattering lengths of charmonia (J/psi and eta_c) with light hadrons (pi, rho and N) by the quenched lattice QCD simulations on 24x24x24x48, 32x32x32x48 and 48x48x48x48 lattices with the lattice spacing a = 0.068 fm. The scattering length is extracted by using the Luscher's phase-shift formula together with the measurement of the energy shift Delta E of two hadrons on the lattice. We find that there exist attractive interactions in all channels, J/psi(eta_c)-pi, J/psi(eta_c)-rho and J/psi(eta_c)-N: The s-wave J/psi-pi (eta_c-pi) scattering length is determined as 0.0119+-0.0039 fm (0.0113+-0.0035 fm) and the corresponding elastic cross section at the threshold becomes 0.018+0.013-0.010 mb (0.016+0.011-0.008 mb). Also, the J/psi-N (eta_c-N) spin-averaged scattering length is 0.71+-0.48 fm (0.70+-0.66 fm), which is at least an order of magnitude larger than the…
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