arXiv:2203.08064·v1·High Energy Physics — Phenomenology
Dependence of the top-quark mass measured in top-quark pair production on the parton distribution functions at the LHC and future colliders
Jason Gombas🇺🇸 · Jarrett Fein🇺🇸 · Sara Sawford🇺🇸 · Reinhard Schwienhorst🇺🇸
Abstract
The dependence of the top-quark mass measurement in top-quark production on the parton distribution functions is explored through the differential distribution of the invariant mass of the top-antitop system in top-quark pair production at hadron colliders. Several different proton-proton collider options are considered: 8 TeV, 13 TeV, 13.6 TeV, 14 TeV, and 100 TeV. The top-quark mass is obtained from a chi-squared fit to the invariant mass of the top-antitop-quark pair. The parton distribution function uncertainties are used in the chi-square evaluation. The uncertainties are reduced through a fit to the longitudinal momentum of the top-antitop system. The top-quark mass uncertainty due to parton distribution functions is found to be reduced by 20%.
Comments: Submitted to the Proceedings of the US Community Study on the Future of Particle Physics (Snowmass 2021)