Self-consistent analysis for the process
arXiv:2501.17681 · doi:10.1103/PhysRevD.111.094016
Abstract
The next-to-next-to-leading-order (NNLO) pQCD predictions for both the decay width and the transition form factor in the process, based on nonrelativistic QCD (NRQCD), deviate from precise experimental measurements. These significant discrepancies have cast doubt on the applicability of NRQCD to charmonium processes. In this paper, we analyze the process by applying the Principle of Maximum Conformality (PMC), a systematic method for eliminating renormalization scheme and scale ambiguities. The PMC renormalization scales are determined by absorbing the non-conformal terms which govern the behavior of the QCD running coupling via the Renormalization Group Equation. We obtain the PMC scale for the decay width. Even after using the PMC method, the convergence of the pQCD series is still poor, which indicates the importance of uncalculated NNNLO and higher-order terms. The resulting value for is in agreement with the Particle Data Group's reported value of keV within the bounds of uncertainties. Moreover, the transition form factor obtained using the PMC is also in good agreement with precise experimental measurements. The application of the PMC suggests a potential resolution to puzzle and supports the applicability of NRQCD to charmonium processes.
7 pages, 5 figures