Tomography of high-twist proton structure through elastic scattering
arXiv:2511.12589
Abstract
We present the first high-twist study of the proton form factors in elastic scattering based on the perturbative QCD factorization, being momentum transfer squared. It is motivated by unexpectedly large higher-power contributions from subleading-twist light-cone distribution amplitudes (LCDAs), which are attributed to the enhancement in endpoint regions of parton momentum fractions. We highlight that the endpoint enhancement, tamed by the resummation effect, is crucial for accommodating the approximate scaling behavior of the data at intermediate GeV. The proton LCDAs up to twist 6 are then extracted, and verified by the charge-parity asymmetries observed in hadronic heavy baryon decays. Our work provides new insights into the proton three-dimensional structure and manifests the precision requirement for reliable perturbative analyses of baryonic exclusive processes.
5 pages, 2 figures, 2 table