arXiv:2603.24271·v1·High Energy Physics — Phenomenology
Dynamical generation of charmonium-like tetraquarks in an off-shell coupled-channel formalism
Hee-Jin Kim🇰🇷 · Hyun-Chul Kim🇰🇷
Abstract
We investigate the dynamical generation of charmonium-like () with spin-parity , and in the mass range of to GeV. We employ the off-shell coupled-channel formalism, constructing kernel amplitudes from effective Lagrangians that respect heavy-quark spin-flavor and chiral symmetries. To focus solely on dynamically generated states, we explicitly exclude -channel pole diagrams and include only - and -channel meson exchanges. Solving the integral equations, we identify six poles in the complex energy plane. In the scalar () sector, we find a bound state below the threshold and a resonance at . For the axial-vector () sector, the experimentally observed is reproduced as a bound state near the threshold, alongside a broader resonance at , which is a plausible candidate for the . Furthermore, we find a narrow tensor () state at and a vector () state at . The present results demonstrate that coupled-channel dynamics, particularly involving the channel, play a crucial role in the formation of these charmonium-like exotic states.
Comments: 16 pages and 7 figures