English

Scope and limitations of a string theory dual description of the proton structure

High Energy Physics - Phenomenology 2022-10-12 v1 High Energy Physics - Theory

Abstract

Symmetric and antisymmetric structure functions from electromagnetic deep inelastic scattering of charged leptons off spin-1/2 hadrons are investigated in the framework of a top-down holographic dual description. We consider the BPST Pomeron, type IIB superstring theory scattering amplitudes, and type IIB supergravity on AdS5×S5_5 \times S^5. In all cases it is used the hard-wall prescription. Different kinematic regions of the Bjorken variable xx, as well as the squared momentum of the virtual photon Q2Q^2, are studied in detail for F2PF_2^P and g1Pg_1^P structure functions of the proton. Also, the virtual Compton scattering asymmetry of the proton A1PA_1^P is investigated. Comparison with data from several experimental collaborations is presented. In addition, the holographic Pomeron leads to predictions for the mentioned observables for very small xx values. In particular, we present predictions for g1Pg_1^P at Q2Q^2 around 10 GeV2^2, for data expected to be measured in a future electron-ion collider. Limitations of this holographic dual approach are discussed.

Keywords

Cite

@article{arxiv.2207.02984,
  title  = {Scope and limitations of a string theory dual description of the proton structure},
  author = {David Jorrin and Martin Schvellinger},
  journal= {arXiv preprint arXiv:2207.02984},
  year   = {2022}
}

Comments

51 pages, 13 figures