How well does nonrelativistic QCD factorization work at next-to-leading order?
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 color octet (CO) LDMEs to high transverse momentum and 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 hadroproduction up to the highest measured values of , as well as production via potential NRQCD based relations. Furthermore, production in and collisions is surprisingly reproduced down to GeV, as long as the region of large inelasticity 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