Determination of proton electromagnetic form factors from DVCS measurements
Abstract
We present a detailed analysis of the proton electromagnetic form factors (FFs) using exclusive photon leptoproduction (EP) data in kinematic regions where the Beth-Heitler (BH) contribution dominates the deeply virtual Compton scattering (DVCS) cross section By exploiting the sensitivity of the BH amplitude to the Dirac and Pauli FFs, we extract , , and the corresponding Sachs FFs within several fitting scenarios based on dipole and -pole parametrizations, and evaluate the charge and magnetic radii of the proton. In this fitting scenario, we show that EP measurements in the range can provide constraints on , while offering limited sensitivity to . The extracted charge radius values tend to be smaller than those obtained from traditional elastic electron-proton scattering measurements and are consistent, within uncertainties, with recent hig-precision PRad results. These findings indicate that EP measurements, especially when covering smaller values of , can serve as a complementary tool for determining the proton electromagnetic structure and may contribute to ongoing efforts to better understand the proton charge radius.The methodology developed here provides a framework for future combined analyses of EP and elastic electron-proton scattering data which enables a unified determination of the nucleon FFs.
Cite
@article{arxiv.2512.06554,
title = {Determination of proton electromagnetic form factors from DVCS measurements},
author = {The MMGPDs Collaboration and Anoushiravan Moradi and Muhammad Goharipour and H. Fatehi and K. Azizi},
journal= {arXiv preprint arXiv:2512.06554},
year = {2026}
}
Comments
19 Pages, 8 Figures, and 5 Tables