English

Chiral and trace anomalies in Deeply Virtual Compton Scattering

High Energy Physics - Phenomenology 2023-01-30 v2 High Energy Physics - Theory Nuclear Theory

Abstract

Inspired by recent work by Tarasov and Venugopalan, we calculate the one-loop quark box diagrams relevant to polarized and unpolarized Deep Inelastic Scattering (DIS) by introducing off-forward momentum lμl^\mu as an infrared regulator. In the polarized case, we rederive the pole 1/l21/l^2 related to the axial (chiral) anomaly. In addition, we obtain the usual logarithmic term and the DIS coefficient function. We interpret the result in terms of the generalized parton distributions (GPDs) H~\tilde{H} and E~\tilde{E} and discuss the possible violation of QCD factorization for the Compton scattering amplitude. Remarkably, we also find poles in the unpolarized case which are remnants of the trace anomaly. We argue that these poles are cancelled by the would-be massless glueball poles in the GPDs HH and EE as well as in their moments, the nucleon gravitational form factors A,BA,B and DD. This mechanism sheds light on the connection between the gravitational form factors and the gluon condensate operator FμνFμνF^{\mu\nu}F_{\mu\nu}.

Keywords

Cite

@article{arxiv.2210.13419,
  title  = {Chiral and trace anomalies in Deeply Virtual Compton Scattering},
  author = {Shohini Bhattacharya and Yoshitaka Hatta and Werner Vogelsang},
  journal= {arXiv preprint arXiv:2210.13419},
  year   = {2023}
}

Comments

14 pages, 1 figure, minor additions to text, updated references, version to appear in PRD

R2 v1 2026-06-28T04:23:06.596Z