Coupled-channel Interaction in Flavor Limit of Lattice QCD
arXiv:2311.02569 · doi:10.1103/PhysRevD.109.074506
Abstract
We study -wave interactions in the system on the basis of the coupled-channel HAL QCD method. The potentials which are faithful to QCD S-matrix below the threshold are extracted from Nambu-Bethe-Salpeter wave functions on the lattice in Flavor Limit. For the simulation, we employ -flavor full QCD gauge configurations on a volume at MeV. %\textcolor{red}{For the charm quark, the relativistic heavy quark action is employed to treat its dynamics on the lattice}. We present our results of the S-wave coupled-channel potentials for the system in the state as well as scattering observables obtained from the extracted potential matrix. We observe that the coupling between and channels is weak. The phase shifts and scattering length obtained from the extracted potential matrix show that the interaction is attractive at low energy and stronger than the interaction though no bound state at MeV.
20 pages, 7 Figures, 5 tables
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