Tailored PDFs for New Physics searches
arXiv:2602.20235 · doi:10.1007/JHEP07(2026)043
Abstract
Given the non-negligible interplay between parton distribution functions (PDFs) at large x and potential New Physics (NP) effects in the high-energy tails of hadron collider observables, a central question is which PDFs can be reliably employed in beyond-the-Standard-Model (BSM) analyses. In this work, we examine the fine balance between using PDF sets with small uncertainties in the large-x region -- crucial for maximising BSM sensitivity -- and adopting conservative PDF fits that exclude high-energy data potentially contaminated by unaccounted NP contributions. We systematically assess a range of conservative PDF fitting strategies designed to mitigate such biases and provide a recommendation for the class of PDFs best suited for robust BSM searches. In addition, we investigate the alternative approach of performing simultaneous fits of Standard Model Effective Field Theory (SMEFT) Wilson coefficients and PDFs, thereby consistently accounting for their mutual correlations. Starting from a toy model to illustrate the underlying mechanisms, we then analyse two realistic NP scenarios: one modifying high-mass Drell-Yan production and another affecting the high-invariant-mass tail of top-quark pair production. Both cases are representative of measurements that will be probed with high precision during the High-Luminosity phase of the LHC.
56 pages. v2: version accepted for publication in JHEP
References in corpus (23)
- Parton distributions for the LHC Run II
- The Path to Proton Structure at One-Percent Accuracy
- Top, Higgs, Diboson and Electroweak Fit to the Standard Model Effective Field Theory
- Energy helps accuracy: electroweak precision tests at hadron colliders
- Dynamical scales for multi-TeV top-pair production at the LHC
- Can New Physics hide inside the proton?
- Effective theories of universal theories
- Inclusive top-pair production phenomenology with TOPIXS
- Parton distributions in the SMEFT from high-energy Drell-Yan tails
- Bayesian Approach to Inverse Problems: an Application to NNPDF Closure Testing
- PineAPPL: combining EW and QCD corrections for fast evaluation of LHC processes
- Neural-network analysis of Parton Distribution Functions from Ioffe-time pseudodistributions
- The top quark legacy of the LHC Run II for PDF and SMEFT analyses
- SMEFiT: a flexible toolbox for global interpretations of particle physics data with effective field theories
- Parton Distributions and New Physics Searches: the Drell-Yan Forward-Backward Asymmetry as a Case Study
- Simultaneous CTEQ-TEA extraction of PDFs and SMEFT parameters from jet and data
- PDF Profiling Using the Forward-Backward Asymmetry in Neutral Current Drell-Yan Production
- Lepton-Charge and Forward-Backward Asymmetries in Drell-Yan Processes for Precision Electroweak Measurements and New Physics Searches
- New Physics from High Energy Tops
- -boson dilepton searches and the high- quark density
- Pineline: Industrialization of High-Energy Theory Predictions
- Enhancing the Large Hadron Collider Sensitivity to Charged and Neutral Broad Resonances of New Gauge Sectors
- Exploring SMEFT Couplings Using the Forward-Backward Asymmetry in Neutral Current Drell-Yan Production at the LHC