Dispersion relations of deeply virtual Compton scattering: investigating twist-4 kinematic power corrections
Abstract
In this paper we include kinematic power corrections up to twist-four to the deeply virtual Compton scattering dispersion relation. We demonstrate that, both for (pseudo-)scalar and spin- targets, the formal expression of the -subtracted leading-twist dispersion relations is preserved. However, the expression of the subtracted constants is modified by the kinematic powers. Importantly, the minimal-subtracted dispersion relation for the helicity-conserving amplitude, previously thought to depend only on the Polyakov-Weiss -term, now also depends on the double distributions and . These results are consistent with the ones obtained previously in the literature. Such a mixing may be critical for the Jefferson Lab kinematic range, as it is not suppressed for typical values of and in the valence region. We therefore expect a strong impact on attempts to extract pressure forces from DVCS data.
Keywords
Cite
@article{arxiv.2509.05059,
title = {Dispersion relations of deeply virtual Compton scattering: investigating twist-4 kinematic power corrections},
author = {Víctor Martínez-Fernández and Cédric Mezrag},
journal= {arXiv preprint arXiv:2509.05059},
year = {2026}
}
Comments
20 pages, 4 figures ; Version accepted for publication