English

Hybrid model of proton structure functions

High Energy Physics - Phenomenology 2022-05-03 v3 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory

Abstract

We develop a "hybrid" model of the proton inelastic structure functions applicable in a wide region of invariant mass of produced states WW and invariant momentum transfer QQ including deep inelastic scattering (DIS), nucleon resonance production as well as the region close to inelastic threshold. DIS is described in terms of the parton distributions together with higher-twist corrections from an available global QCD fit. The resonant part is addressed in terms of the Breit-Wiegner contributions from five states including the Δ(1232)\Delta(1232) resonance, the N(1440)N(1440) Roper resonance, and three effective resonances describing the second and third resonance regions. The couplings of the nucleon resonances to photon are described in terms of helicity amplitudes. The nonresonant background is addressed in terms of DIS structure functions smoothly extrapolated to low-WW and low-QQ values with the proper behavior at the real photon limit Q2=0Q^2=0 as well as near the inelastic threshold. We independently treat the transverse FTF_T and the longitudinal FLF_L structure function and fix the model parameters from a global analysis of the world hydrogen electroproduction and photoproduction cross-section data. We demonstrate a very good performance of the model by comparing our predictions with data on differential cross sections and the structure functions F2F_2 and R=FL/FTR=F_L/F_T.

Keywords

Cite

@article{arxiv.2103.00158,
  title  = {Hybrid model of proton structure functions},
  author = {S. A. Kulagin and V. V. Barinov},
  journal= {arXiv preprint arXiv:2103.00158},
  year   = {2022}
}

Comments

54 pages, 42 figures. Final version published in Phys. Rev. C including Supplemental Material

R2 v1 2026-06-23T23:33:50.131Z