Kaon Distribution Functions from Empirical Information
Abstract
Using available information from Drell-Yan data on pion and kaon structure functions, an approach is described which enables the development of pointwise profiles for all pion and kaon parton distribution functions (DFs) without reference to theories of hadron structure. The key steps are construction of structure-function-constrained probability-weighted ensembles of valence DF replicas and use of an evolution scheme for parton DFs that is all-orders exact. The DFs obtained express qualitatively sound features of light-meson structure, e.g., the effects of Higgs boson couplings into QCD and the size of heavy-quark momentum fractions in light hadrons. In order to improve the results, additional and more precise data on the -quark-in-kaon, , to -quark-in-pion, , DF ratio would be necessary. Of greater value would be extraction of alone, thereby avoiding inference from the ratio: currently, the data-based form of is materially influenced by results for .
Cite
@article{arxiv.2411.15376,
title = {Kaon Distribution Functions from Empirical Information},
author = {Zhen-Ni Xu and Daniele Binosi and Chen Chen and Khépani Raya and Craig D. Roberts and José Rodríguez-Quintero},
journal= {arXiv preprint arXiv:2411.15376},
year = {2024}
}
Comments
8 pages, 5 figures, 3 tables