An FONLL prescription with coexisting flavor number PDFs

Andrea Barontini, Alessandro Candido, Felix Hekhorn, Giacomo Magni, Roy Stegeman*

*Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

We present a new prescription to account for heavy quark mass effects in the determination of parton distribution functions (PDFs) based on the FONLL scheme. Our prescription makes explicit use of the freedom to choose the number of active flavors at a given scale and, thus, use coexisting PDFs with different active flavor number. This new prescription is perturbatively equivalent to the former but improves the implementation in two ways. First, it can be naturally generalized to account simultaneously for multiple heavy quark effects, such as charm and bottom effects, which can both be relevant at the same scale due to the small mass difference. Second, it can be trivially generalized to use at any fixed-order or collinear resummed accuracy, while previous prescriptions required ad-hoc expansions of the DGLAP evolution kernels for each coefficient. We supplement the paper with codes for the computation of deep inelastic scattering observables in this new prescription.

Original languageEnglish
Article number4
Pages (from-to)1-21
Number of pages21
JournalJournal of High Energy Physics
Volume2024
Issue number10
Early online date1 Oct 2024
DOIs
Publication statusPublished - 2024

Bibliographical note

Publisher Copyright:
© The Author(s) 2024.

Funding

F. H. is supported by the Academy of Finland project 358090 and is funded as a part of the Center of Excellence in Quark Matter of the Academy of Finland, project 346326. G. M. is supported by NWO, the Dutch Research Council. R. S. is supported by the U.K. Science and Technology Facility Council (STFC) consolidated grants ST/T000600/1 and ST/X000494/1. We thank the members of the NNPDF collaboration for useful and insightful discussions at the various stages of this project. We are grateful to Richard Ball and Stefano Forte for comments on the manuscript. F. H. is supported by the Academy of Finland project 358090 and is funded as a part of the Center of Excellence in Quark Matter of the Academy of Finland, project 346326. G. M. is supported by NWO, the Dutch Research Council. R. S. is supported by the U.K. Science and Technology Facility Council (STFC) consolidated grants ST/T000600/1 and ST/X000494/1.

FundersFunder number
Nederlandse Organisatie voor Wetenschappelijk Onderzoek
U.K. Science and Technology Facility Council
UK Research and Innovation
Science and Technology Facilities CouncilST/T000600/1, ST/X000494/1
Research Council of Finland358090, 346326

    Keywords

    • Deep Inelastic Scattering or Small-x Physics
    • Parton Distributions
    • Quark Masses

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