Parton distribution function uncertainties in theoretical predictions for far-forward tau neutrinos at the Large Hadron Collider
arXiv:2112.11605 · doi:10.1007/JHEP06(2022)148
Abstract
New experiments to measure neutrinos in the far-forward region at the Large Hadron Collider (LHC) are under design or already in preparation. Two of them, FASER and SND@LHC, are expected to be active during Run 3 and have the potential to detect neutrinos that come from high-energy collisions in one of the LHC interaction points, extracted along the direction tangent to the beam line. Tau neutrinos and antineutrinos come predominantly from production in collisions, followed by the leptonic decay of these mesons. Neutrino pseudorapidities in the range of and are relevant to these future experiments. At such pseudorapidities at high energies, theoretical predictions for the flux of tau neutrinos rely on parton distribution functions (PDFs) in a combination of very small and large parton values. We evaluate PDF uncertainties in a next-to-leading order (NLO) QCD calculation of the flux of + produced by decay in the far forward region at the LHC. The theoretical uncertainty associated with the 40 PDF sets of the PROSA19 group amounts to \% for the ( + ) number of charged-current (CC) events. Scale uncertainties are much larger, resulting in a range of CC event predictions from lower to higher than the central prediction. A comparison of the predictions with those obtained using as input the central PDFs from the 3-flavour NLO PDF sets of the CT14, ABMP16 and NNPDF3.1 collaborations show that far-forward neutrino energy distributions vary by as much as a factor of relative to the PROSA19 predictions at TeV neutrino energies. The Forward Physics Facility in the high luminosity LHC era will provide data capable of constraining NLO QCD evaluations with these PDF sets.
61 pages, 23 figures, 12 tables
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- Investigating the fluxes and physics potential of LHC neutrino experiments
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- Forward production of prompt neutrinos from charm in the atmosphere and at high energy colliders
- Science and Project Planning for the Forward Physics Facility in Preparation for the 2024-2026 European Particle Physics Strategy Update
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- Neutrino Experiments at the Large Hadron Collider
- Probing a gauge boson via neutrino trident scattering in the Forward Physics Facility at the LHC and FCC
- Letter of Intent: The Forward Physics Facility
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