English

Spatial imaging of proton via leading-twist non-skewed GPDs with basis light-front quantization

High Energy Physics - Phenomenology 2024-01-23 v2 High Energy Physics - Theory Nuclear Theory

Abstract

The internal image of the proton is unveiled by examining the generalized parton distributions (GPDs) at zero skewness, within the basis light-front quantized environment. Several distributions emerge when a quark is sampled with different currents depending upon the helicity arrangements of the active quark and the proton target. We investigate six of the eight leading-twist proton GPDs of the valence quarks, the helicity conserving distributions (H,E,H~)(H, E, \tilde{H}) and the helicity non-conserving (HT,ET,H~T)(H_T,E_T,\tilde{H}_T) distributions at skewness set to zero (ζ=0\zeta=0). We consider purely transverse momentum transfer and, hence, obtain results describe only the proton's two-dimensional structure in the transverse plane. We present the Mellin moments of these distribution functions, where the first moment produces a form factor and the second Mellin moments help extract the information on partonic contributions to the hadronic angular momentum. We compare our results for the Mellin moments with those from lattice QCD and other approaches where available. We also present the GPDs in transverse position space.

Keywords

Cite

@article{arxiv.2307.09869,
  title  = {Spatial imaging of proton via leading-twist non-skewed GPDs with basis light-front quantization},
  author = {Satvir Kaur and Siqi Xu and Chandan Mondal and Xingbo Zhao and James P. Vary},
  journal= {arXiv preprint arXiv:2307.09869},
  year   = {2024}
}

Comments

29 pages, 11 figures, 3 tables, addition of Fig. 9, minor modifications in text