Parton Distributions and New Physics Searches: the Drell-Yan Forward-Backward Asymmetry as a Case Study
arXiv:2209.08115 · doi:10.1140/epjc/s10052-022-11133-y
Abstract
We discuss the sensitivity of theoretical predictions of observables used in searches for new physics to parton distributions (PDFs) at large momentum fraction . Specifically, we consider the neutral-current Drell-Yan production of gauge bosons with invariant masses in the TeV range, for which the forward-backward asymmetry of charged leptons from the decay of the gauge boson in its rest frame is a traditional probe of new physics. We show that the qualitative behaviour of the asymmetry depends strongly on the assumptions made in determining the underlying PDFs. We discuss and compare the large- behaviour of various different PDF sets, and find that they differ significantly. Consequently, the shape of the asymmetry observed at lower dilepton invariant masses, where all PDF sets are in reasonable agreement because of the presence of experimental constraints, is not necessarily reproduced at large masses where the PDFs are mostly unconstrained by data. It follows that the shape of the asymmetry at high masses may depend on assumptions made in the PDF parametrization, and thus deviations from the traditionally expected behaviour cannot be taken as a reliable indication of new physics. We demonstrate that forward-backward asymmetry measurements could help in constraining PDFs at large and discuss the accuracy that would be required to disentangle the effects of new physics from uncertainties in the PDFs in this region.
27 pages, 20 figures. v2: version accepted for publication in EPJC
References in corpus (13)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Parton distributions from LHC, HERA, Tevatron and fixed target data: MSHT20 PDFs
- The Path to Proton Structure at One-Percent Accuracy
- Top, Higgs, Diboson and Electroweak Fit to the Standard Model Effective Field Theory
- The PDF4LHC21 combination of global PDF fits for the LHC Run III
- Search for resonant and nonresonant new phenomena in high-mass dilepton final states at 13 TeV
- Lepton-pair production at hadron colliders at NLO in QCD
- Mixed strongelectroweak corrections to the DrellYan process
- Parton distributions in the SMEFT from high-energy Drell-Yan tails
- PineAPPL: combining EW and QCD corrections for fast evaluation of LHC processes
- Self-consistent determination of proton and nuclear PDFs at the Electron Ion Collider
- Lepton-Charge and Forward-Backward Asymmetries in Drell-Yan Processes for Precision Electroweak Measurements and New Physics Searches
- Enhancing the Large Hadron Collider Sensitivity to Charged and Neutral Broad Resonances of New Gauge Sectors
Cited by in corpus (13)
- Electroweak superpartner production at 13.6 TeV with Resummino
- Unbinned multivariate observables for global SMEFT analyses from machine learning
- Strong Interaction Physics at the Luminosity Frontier with 22 GeV Electrons at Jefferson Lab
- Pineline: Industrialization of High-Energy Theory Predictions
- Systematic uncertainties from higher-twist corrections in DIS at large x
- Probing the weak mixing angle at high energies at the LHC and HL-LHC
- Extraction of the neutron F2 structure function from inclusive proton and deuteron deep-inelastic scattering data
- Les Houches 2023 -- Physics at TeV Colliders: Report on the Standard Model Precision Wishlist
- Deep-Inelastic Scattering at TeV Energies with LHC Muons
- Exploring SMEFT Couplings Using the Forward-Backward Asymmetry in Neutral Current Drell-Yan Production at the LHC
- Tailored PDFs for New Physics searches
- Theory pipeline for PDF fitting
- Global Analyses of Generalized Parton Distributions with Diverse PDF Inputs