Reconstruction of Monte Carlo replicas from Hessian parton distributions

被引:0
作者
Tie-Jiun Hou
Jun Gao
Joey Huston
Pavel Nadolsky
Carl Schmidt
Daniel Stump
Bo-Ting Wang
Ke Ping Xie
Sayipjamal Dulat
Jon Pumplin
C. P. Yuan
机构
[1] Southern Methodist University,Department of Physics
[2] Shanghai Jiao-Tong University,INPAC, Shanghai Key Laboratory for Particle Physics and Cosmology, Department of Physics and Astronomy
[3] Argonne National Laboratory,High Energy Physics Division
[4] Michigan State University,Department of Physics and Astronomy
[5] Xinjiang University,School of Physics Science and Technology
[6] Xinjiang University,Center for Theoretical Physics
来源
Journal of High Energy Physics | / 2017卷
关键词
QCD Phenomenology; Deep Inelastic Scattering (Phenomenology);
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摘要
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.
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