Reconstruction of Monte Carlo replicas from Hessian parton distributions
arXiv:1607.06066 · doi:10.1007/JHEP03(2017)099
Abstract
We explore connections between two common methods for quantifying the uncertainty in parton distribution functions (PDFs), based on the Hessian error matrix and Monte-Carlo sampling. CT14 parton distributions in the Hessian representation are converted into Monte-Carlo replicas by a numerical method that reproduces important properties of CT14 Hessian PDFs: the asymmetry of CT14 uncertainties and positivity of individual parton distributions. The ensembles of CT14 Monte-Carlo replicas constructed this way at NNLO and NLO are suitable for various collider applications, such as cross section reweighting. Master formulas for computation of asymmetric standard deviations in the Monte-Carlo representation are derived. A correction is proposed to address a bias in asymmetric uncertainties introduced by the Taylor series approximation. A numerical program is made available for conversion of Hessian PDFs into Monte-Carlo replicas according to normal, log-normal, and Watt-Thorne sampling procedures.
21 pages, 10 figures; final JHEP version, extended Sec. 2 to discuss sampling of asymmetric PDF replica distributions with imposed positivity constraints
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
- PDF4LHC recommendations for LHC Run II
- Parton distributions in the LHC era: MMHT 2014 PDFs
- Hard Interactions of Quarks and Gluons: a Primer for LHC Physics
- Study of Monte Carlo approach to experimental uncertainty propagation with MSTW 2008 PDFs
- Measurement of the electron charge asymmetry in inclusive W production in pp collisions at sqrt(s) = 7 TeV
- aMCfast: automation of fast NLO computations for PDF fits
- Specialized minimal PDFs for optimized LHC calculations
Cited by in corpus (30)
- New CTEQ global analysis of quantum chromodynamics with high-precision data from the LHC
- Parton distributions and lattice QCD calculations: a community white paper
- The PDF4LHC21 combination of global PDF fits for the LHC Run III
- CT14 Intrinsic Charm Parton Distribution Functions from CTEQ-TEA Global Analysis
- Snowmass 2021 whitepaper: Proton structure at the precision frontier
- Hadron structure in high-energy collisions
- Updating and Optimizing Error PDFs in the Hessian Approach
- PDF bias and flavor dependence in TMD distributions
- Signatures of toponium formation in LHC run 2 data
- Nucleon spin structure functions at NNLO in the presence of target mass corrections and higher twist effects
- Vector boson production in proton-lead and lead-lead collisions at the LHC and its impact on nCTEQ15 PDFs
- Updated QCD global analysis of single transverse-spin asymmetries I: Extracting , and the role of the Soffer bound and lattice QCD
- Nonperturbative strange-quark sea from lattice QCD, light-front holography, and meson-baryon fluctuation models
- Parton distributions need representative sampling
- Probing the Sea Quark Content of the Proton with One-Particle-Inclusive Processes
- Measurements of and cross sections and their ratios in collisions at RHIC
- Nuclear Uncertainties in the Determination of Proton PDFs
- Measurement of the inclusive cross-section for the production of jets in association with a Z boson in proton-proton collisions at 8 TeV using the ATLAS detector
- NLO Productions of and with a Global Extraction of the Jet Transport Parameter in Heavy Ion collisions
- Phenomenology of diffractive DIS in the framework of fracture functions and determination of diffractive parton distribution functions
- Phenomenology of leading nucleon production in collisions at HERA in the framework of fracture functions
- Determination of neutron fracture functions from a global QCD analysis of leading neutron production at HERA
- Understanding and constraining the PDF uncertainties in a W boson mass measurement with forward muons at the LHC
- Quenching of jets tagged with bosons in high-energy nuclear collisions
- Study of nuclear corrections on the charged hadron fragmentation functions in a Neural Network global QCD analysis
- New insights from the flavor dependence of quark transverse momentum distributions in the pion
- On the Modelling of Energetic Multi-jet QCD Events
- The Forward Physics Facility at the High-Luminosity LHC
- New Developments in KKMChh: Quark-Level Exponentiated Radiative Corrections and Semi-analytical Results
- An analysis of parton distributions in a pion with Bézier parametrizations