English

How well does nonrelativistic QCD factorization work at next-to-leading order?

High Energy Physics - Phenomenology 2025-07-18 v2

Abstract

We perform a thorough investigation of the universality of the long distance matrix elements (LDMEs) of nonrelativistic QCD factorization based on a next-to-leading order (NLO) fit of J/ψJ/\psi color octet (CO) LDMEs to high transverse momentum pTp_T J/ψJ/\psi and ηc\eta_c production data at the LHC. We thereby apply a novel fit-and-predict procedure to systematically take into account scale variations, and predict various observables never studied in this context before. In particular, the LDMEs can well describe J/ψJ/\psi hadroproduction up to the highest measured values of pTp_T, as well as Υ(nS)\Upsilon(nS) production via potential NRQCD based relations. Furthermore, J/ψJ/\psi production in γγ\gamma \gamma and γp\gamma p collisions is surprisingly reproduced down to pT=1p_T=1 GeV, as long as the region of large inelasticity zz is excluded, which may be of significance in future quarkonium studies, in particular at the EIC and the high-luminosity LHC. In addition, our summary reveals an interesting pattern as to which observables still evade a consistent description.

Keywords

Cite

@article{arxiv.2411.16384,
  title  = {How well does nonrelativistic QCD factorization work at next-to-leading order?},
  author = {Nora Brambilla and Mathias Butenschoen and Xiang-Peng Wang},
  journal= {arXiv preprint arXiv:2411.16384},
  year   = {2025}
}

Comments

6 pages, 16 figures, changes have been done to match the published version

R2 v1 2026-06-28T20:11:26.954Z