Specialized minimal PDFs for optimized LHC calculations
arXiv:1602.00005 · doi:10.1140/epjc/s10052-016-4042-8
Abstract
We present a methodology for the construction of parton distribution functions (PDFs) designed to provide an accurate representation of PDF uncertainties for specific processes or classes of processes with a minimal number of PDF error sets: specialized minimal PDF sets, or SM-PDFs. We construct these SM-PDFs in such a way that sets corresponding to different input processes can be combined without losing information, specifically on their correlations, and that they are robust upon smooth variations of the kinematic cuts. The proposed strategy never discards information, so that the SM-PDF sets can be enlarged by the addition of new processes, until the prior PDF set is eventually recovered for a large enough set of processes. We illustrate the method by producing SM-PDFs tailored to Higgs, top quark pair, and electroweak gauge boson physics, and determine that, when the PDF4LHC15 combined set is used as the prior, around 11, 4 and 11 Hessian eigenvectors respectively are enough to fully describe the corresponding processes.
31 pages, 13 figures. Final version published in Eur. Phys. J. C: typos corrected, discussion of perturbative orders added in sects 2.3 and 3.1
References in corpus (8)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- LHAPDF6: parton density access in the LHC precision era
- Parton distributions in the LHC era: MMHT 2014 PDFs
- Study of Monte Carlo approach to experimental uncertainty propagation with MSTW 2008 PDFs
- aMCfast: automation of fast NLO computations for PDF fits
- APFEL Web: a web-based application for the graphical visualization of parton distribution functions
- The impact of PDF uncertainties on the measurement of the W boson mass at the Tevatron and the LHC
- PDF uncertainties on the W boson mass measurement from the lepton transverse momentum distribution
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