ReportGem ReportGem

Academic paper

Gluonic nucleon energy correlators and fracture functions for Color Glass Condensate

Authors: Heikki M\"antysaari, Yu Shi, Yossathorn Tawabutr, Xuan-Bo TongPublished: 2026-08-11Paper ID: 2608.10955Category: hep-phLicense: CC BY 4.0

Abstract

Nucleon energy correlators (NECs) and fracture functions provide novel tools for probing nucleon and nuclear structure at small $x$ through measurements in the target fragmentation region (TFR) of deep inelastic scattering (DIS). We investigate gluonic NECs and fracture functions using the Color Glass Condensate effective theory at eikonal accuracy. We find that only the unpolarized and linearly polarized gluon components in an unpolarized target are nonvanishing at this order, and that both are determined by the adjoint dipole $S$-matrix. Furthermore, we show that the linearly polarized gluonic NEC $h_{1}^{t,g}$ generates a characteristic $\cos 2\phi$ azimuthal asymmetry in the DIS energy pattern in the TFR. Unlike analogous observables in the current fragmentation region, this asymmetry is governed by the ratio of the linearly polarized gluon NEC $h_{1}^{t,g}$ to the unpolarized quark NEC $f_{1}^{q}$, making it particularly sensitive to the saturation scale. Our numerical analysis shows that this asymmetry exhibits substantial nuclear suppression, providing a novel window into the onset of gluon saturation at the future Electron-Ion Collider.

This public page contains bibliographic metadata and the author abstract. Use the reader for licensed document access.

Open licensed paper reader