PartonDensity.jl: a novel parton density determination code
arXiv:2401.17729 · doi:10.1103/PhysRevD.110.014024
Abstract
We introduce our novel Bayesian parton density determination code, PartonDensity.jl. The motivation for this new code, the framework and its validation are described. As we show, PartonDensity.jl provides both a flexible environment for the determination of parton densities and a wealth of information concerning the knowledge update provided by the analyzed data set.
Accepted version. Code available here: https://github.com/cescalara/PartonDensity.jl
References in corpus (17)
- Parton distributions from high-precision collider data
- New parton distribution functions from a global analysis of quantum chromodynamics
- The Three-Loop Splitting Functions in QCD: The Non-Singlet Case
- The Three-Loop Splitting Functions in QCD: The Singlet Case
- New CTEQ global analysis of quantum chromodynamics with high-precision data from the LHC
- Parton distributions from LHC, HERA, Tevatron and fixed target data: MSHT20 PDFs
- The Path to Proton Structure at One-Percent Accuracy
- QCDNUM: Fast QCD Evolution and Convolution
- The ABM parton distributions tuned to LHC data
- NLO PDFs from the ABMP16 fit
- Intrinsic charm in a matched general-mass scheme
- Cruising The Simplex: Hamiltonian Monte Carlo and the Dirichlet Distribution
- p-Values for Model Evaluation
- On the determination of uncertainties in parton densities
- Study of proton parton distribution functions at high x using ZEUS data
- Measurement of neutral current e+/-p cross sections at high Bjorken x with the ZEUS detector
- New constraints on the up-quark valence distribution in the proton