arXiv:2603.10440·v2·High Energy Physics — Phenomenology
Three-gluon decays of radially excited quarkonia and with both relativistic and QCD radiative corrections
Chao-Jie Fan🇨🇳 · Jun-Kang He🇨🇳
Abstract
For the radially excited heavy quarkonia and , the nodal structure of the wave function renders the three-gluon decay acutely sensitive to relativistic corrections, a longstanding challenge for reliable theoretical predictions. Within the Bethe-Salpeter formalism under the covariant instantaneous ansatz, we construct analytic harmonic-oscillator wave functions incorporating the node and derive model-independent relations among the polarized decay widths from helicity-flip and phase-space symmetries. Motivated by the strikingly slow -order convergence driven by destructive interference at the node, we introduce a concise phenomenological treatment of the higher-order contributions that preserves the correct low-momentum limit. Including both relativistic and QCD radiative corrections, our predictions for , and agree well with experiment, and the extracted lies at the lower end of typical phenomenological ranges, reflecting a more localized momentum-space wave function.
Comments: 28 pages, 1 figure