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arXiv:2306.02425·v2·High Energy Physics — Phenomenology

Curing the high-energy perturbative instability of vector-quarkonium-photoproduction cross sections at order with high-energy factorisation

Jean-Philippe Lansberg🇫🇷 · Maxim Nefedov🇫🇷 · Melih A. Ozcelik🇫🇷

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Abstract

We cure the perturbative instability of the total-inclusive-photoproduction cross sections of vector -wave quarkonia observed at high photon-proton-collision energies () in Next-to-Leading Order (NLO) Collinear-Factorisation (CF) computations. This is achieved using High-Energy Factorisation (HEF) in the Doubly-Logarithmic Approximation (DLA), which is a subset of the Leading-Logarithmic Approximation (LLA) of HEF which resums higher-order QCD corrections proportional to in the Regge limit with being the quarkonium mass and is the squared partonic-center-of-mass energy. Such a DLA is strictly consistent with the NLO and NNLO DGLAP evolutions of the Parton Distribution Functions. By improving the treatment of the large- asymptotics of the CF coefficient function, the resummation cures the unphysical results of the NLO CF calculation. The matching is directly performed in space using the Inverse-Error Weighting matching procedure which avoids any possible double counting. The obtained cross sections are in good agreement with data. In addition, the scale-variation uncertainty of the matched result is significantly reduced compared to the LO results. Our calculations also yield closed-form analytic limits for of the NLO partonic CF and numerical limits for contributions to those at NNLO scaling like .

Comments: 33 pages, 8 figures, minor improvements in the discussion of matching, results unchanged, to be submitted to EPJC

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