English

$\gamma^* \gamma$ and $\gamma^* p$ scattering in IHQCD

High Energy Physics - Phenomenology 2020-12-08 v3 High Energy Physics - Theory

Abstract

We perform joint fits using measurements of the proton structure functions F2(x,Q2)F_2(x,Q^2) and FL(x,Q2)F_L(x,Q^2), of the photon structure function F2γ(x,Q2)F_2^\gamma(x,Q^2) and of the total cross-sections σ(γpX)\sigma\left( \gamma p \rightarrow X\right) and σ(γγX)\sigma \left( \gamma \gamma \rightarrow X\right). The data is gathered from several sources including HERA and LEP. The kinematical range considered is wide with a photon virtuality Q2400GeV2Q^2 \leq400 \, {\rm GeV}^2, Bjorken variable x<0.01x<0.01 and s>4GeV\sqrt{s} > 4 \, {\rm GeV}. This is done by considering a U(1)U\left(1\right) vector gauge field minimally coupled to the graviton Regge trajectory in improved holographic QCD. We find good agreement with the data for a joint fit of F2γF_2^\gamma and σ(γγX)\sigma\left(\gamma \gamma \rightarrow X\right) with a χd.o.f.2=1.07\chi_{d.o.f.}^2 = 1.07. For a joint fit of F2F_2, FLF_L and σ(γpX)\sigma\left( \gamma p \rightarrow X\right) we find χd.o.f.2=1.40\chi_{d.o.f.}^2 = 1.40. A joint fit of all observables for both processes γγ\gamma^* \gamma and γp\gamma^* p gives a χd.o.f.2=1.38\chi_{d.o.f.}^2 = 1.38. The gravitational couplings of the U(1)U\left(1\right) vector gauge field and of the proton with the Reggeons of the graviton Regge trajectory are given as an output of the fitting procedure. An approximate relation between the structure functions, valid at NLO QCD, is used to estimate the parton distribution function of the gluon inside the proton.

Keywords

Cite

@article{arxiv.2006.05299,
  title  = {$\gamma^* \gamma$ and $\gamma^* p$ scattering in IHQCD},
  author = {Artur Amorim and Miguel S. Costa},
  journal= {arXiv preprint arXiv:2006.05299},
  year   = {2020}
}

Comments

13 pages, 8 figures. Major revision, including new section on gamma-gamma scattering. To appear in PRD