English

Gluon Shadowing in Heavy-Flavor Production at the LHC

High Energy Physics - Phenomenology 2018-08-06 v2 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory

Abstract

We study the relevance of experimental data on heavy-flavor [D0D^0, J/ψJ/\psi, BJ/ψB\rightarrow J/\psi and Υ(1S)\Upsilon(1S) mesons] production in proton-lead collisions at the LHC to improve our knowledge of the gluon-momentum distribution inside heavy nuclei. We observe that the nuclear effects encoded in both most recent global fits of nuclear parton densities at next-to-leading order (nCTEQ15 and EPPS16) provide a good overall description of the LHC data. We interpret this as a hint that these are the dominant ones. In turn, we perform a Bayesian-reweighting analysis for each particle data sample which shows that each of the existing heavy-quark(onium) data set clearly points --with a minimal statistical significance of 7 σ\sigma-- to a shadowed gluon distribution at small xx in the lead. Moreover, our analysis corroborates the existence of gluon antishadowing. Overall, the inclusion of such heavy-flavor data in a global fit would significantly reduce the uncertainty on the gluon density down to x7×106x\simeq 7\times 10^{-6} --where no other data exist-- while keeping an agreement with the other data of the global fits. Our study accounts for the factorization-scale uncertainties which dominate for the charm(onium) sector.

Keywords

Cite

@article{arxiv.1712.07024,
  title  = {Gluon Shadowing in Heavy-Flavor Production at the LHC},
  author = {Aleksander Kusina and Jean-Philippe Lansberg and Ingo Schienbein and Hua-Sheng Shao},
  journal= {arXiv preprint arXiv:1712.07024},
  year   = {2018}
}

Comments

4 pages + references + appendix, 1 figure; v2: match to the journal version, add the supplemental material