Next-to-leading order QCD predictions for dijet photoproduction in lepton-nucleus scattering at the future EIC and at possible LHeC, HE-LHeC, and FCC facilities
arXiv:2003.09129 · doi:10.1103/PhysRevC.102.065201
Abstract
We calculate cross sections for inclusive dijet photoproduction in electron-nucleus scattering in the kinematics of the future EIC and the possible LHeC, HE-LHeC, and the FCC using next-to-leading order (NLO) perturbative QCD and nCTEQ15 and EPPS16 nuclear parton density functions (nPDFs). We make predictions for distributions in the dijet average transverse momentum , the average rapidity , the observed nuclear momentum fraction , and the observed photon momentum fraction . Comparing the kinematic reaches of the four colliders, we find that an increase of the collision energy from the EIC to the LHeC and beyond extends the coverage in all four considered variables. Notably, the LHeC and HE-LHeC will allow one to probe the dijet cross section down to (down to at the FCC). The ratio of the dijet cross sections on a nucleus and the proton, , depends on in a similar way as the ratio of gluon densities, , for which current nPDFs predict a strong suppression due to nuclear shadowing in the region . Dijet photoproduction at future lepton-nucleus colliders can therefore be used to test this prediction and considerably reduce the current uncertainties of nPDFs.
12 pages, 5 figures. Final published version
References in corpus (5)
- The Physics of Ultraperipheral Collisions at the LHC
- Parton Distributions in Nucleons and Nuclei
- Nuclear Parton Distributions from Lepton-Nucleus Scattering and the Impact of an Electron-Ion Collider
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Cited by in corpus (6)
- Nuclear PDFs After the First Decade of LHC Data
- Asymmetric jet clustering in deep-inelastic scattering
- Charm jets as a probe for strangeness at the future Electron-Ion Collider
- Parton rescattering and gluon saturation in dijet production at EIC
- Impact of Inclusive Electron Ion Collider Data on Collinear Parton Distributions
- Multiprocess imaging of nuclear modifications on parton distributions in proton-nucleus collisions