arXiv · 2604.20247
Near-Threshold OPE Constraints and High-Energy Diffractive Dynamics in J/psi Photoproduction
Abstract
We study the forward $J/\psi N$ amplitude $M_{\psi N}(\lambda)$ using a leading-twist Coulombic operator-product expansion, exact physical-domain target-mass resummation, and modern gluon PDFs. Forward-intercept extrapolations reported by GlueX and CLAS12 constrain the amplitude modulus within a vector-meson-dominance normalization. After fitting an overall scale and a subtraction constant, the exact-TMC and no-TMC descriptions differ by only $\Delta\chi^2=0.021$, while a two-parameter empirical exponential gives an equally good fit. The point $C_{\rm sub}=0$ changes the profiled minimum by only $0.033$. Current near-threshold data therefore determine neither the target-mass correction nor the subtraction constant separately. An independent correlated fit to HERA data gives $\delta=0.695\pm0.023$. The absence of direct-proton measurements between $W\simeq4.73$ and $20~\mathrm{GeV}$ prevents a data-driven determination of the crossover to high-energy diffraction.
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Arkadiy I. Syamtomov. 2026-04-22. Near-Threshold OPE Constraints and High-Energy Diffractive Dynamics in J/psi Photoproduction. https://doi.org/10.1016/j.nuclphysa.2026.123481
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