and scatterings from lattice QCD
arXiv:2505.23220 · doi:10.1103/21tc-c8mc
Abstract
We investigate the -wave and scattering in the channels up to a center-of-mass energy of 6.6~GeV. The calculations are carried out at two unphysical pion masses, ~MeV and 250~MeV, in lattice QCD. For each , we extract the finite-volume energy levels on two lattices with an identical lattice spacing () but different spatial volumes. Since the coupled-channel effects between the and channels are found to be negligible, we analyze the corresponding scattering properties using the single-channel L"{u}scher method. We find that the interactions in these dicharmonium systems are dominated by the quark rearrangement effect. In the channel, the near-threshold attraction in and repulsion in can be explained through the Fierz rearrangement. The attractive interaction in the channel allows for the existence of a near-threshold scalar structure, which may correspond to the . However, possible left-hand-cut effects due to light-hadron exchange prevent us from precisely determining the pole positions. In the channel, while the system exhibits a repulsive interaction near threshold, the scattering amplitude has a Castillejo-Dalitz-Dyson zero at and a resonance pole at for and for , where the uncertainties are statistical. This resonance may correspond to the (or ) reported by the ATLAS and CMS Collaborations. Our result supports its assignment, in agreement with the latest spin-parity determination by CMS.
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