Impact of the heavy quark matching scales in PDF fits
arXiv:1707.05343 · doi:10.1140/epjc/s10052-017-5407-3
Abstract
We investigate the impact of displaced heavy quark matching scales in a global fit. The heavy quark matching scale determines at which energy scale the QCD theory transitions from to in the Variable Flavor Number Scheme (VFNS) for the evolution of the Parton Distribution Functions (PDFs) and strong coupling . We study the variation of the matching scales, and their impact on a global PDF fit of the combined HERA data. As the choice of the matching scale effectively is a choice of scheme, this represents a theoretical uncertainty; ideally, we would like to see minimal dependence on this parameter. For the transition across the charm quark (from to ), we find a large dependence of the global fit at NLO, but this is significantly reduced at NNLO. For the transition across the bottom quark (from to ), we have a reduced dependence of the at both NLO and NNLO as compared to the charm. This feature is now implemented in xFitter 2.0.0, an open source QCD fit framework.
18 pages, 12 figures. Updated to match published version
References in corpus (7)
- QCDNUM: Fast QCD Evolution and Convolution
- Heavy-quark mass dependence in global PDF analyses and 3- and 4-flavour parton distributions
- APFEL Web: a web-based application for the graphical visualization of parton distribution functions
- Small- resummation from HELL
- Measurement of beauty and charm production in deep inelastic scattering at HERA and measurement of the beauty-quark mass
- HERA data and DGLAP evolution: theory and phenomenology
- Heavy Quark Production in the ACOT Scheme at NNLO and N3LO
Cited by in corpus (6)
- Parton Distributions in Nucleons and Nuclei
- Improved constraints on parton distributions using LHCb, ALICE and HERA heavy-flavour measurements and implications for the predictions for prompt atmospheric-neutrino fluxes
- The photon PDF determination within the xFitter framework
- The photon PDF from high-mass Drell Yan data at the LHC using xFitter
- Heavy-flavor PDF evolution and variable-flavor number scheme uncertainties in deep-inelastic scattering
- Analysis of HERA data with a PDF parametrization inspired by quantum statistical mechanics