English

Saturation effects in SIDIS at very forward rapidities

High Energy Physics - Phenomenology 2022-04-27 v2 Nuclear Theory

Abstract

Using the dipole picture for electron-nucleus deep inelastic scattering at small Bjorken xx, we study the effects of gluon saturation in the nuclear target on the cross-section for SIDIS (single inclusive hadron, or jet, production). We argue that the sensitivity of this process to gluon saturation can be enhanced by tagging on a hadron (or jet) which carries a large fraction z1z \simeq 1 of the longitudinal momentum of the virtual photon. This opens the possibility to study gluon saturation in relatively hard processes, where the virtuality Q2Q^2 is (much) larger than the target saturation momentum Qs2Q_s^2, but such that z(1z)Q2Qs2z(1-z)Q^2\lesssim Q_s^2. Working in the limit z(1z)Q2Qs2z(1-z)Q^2\ll Q_s^2, we predict new phenomena which would signal saturation in the SIDIS cross-section. For sufficiently low transverse momenta kQsk_\perp\ll Q_s of the produced particle, the dominant contribution comes from elastic scattering in the black disk limit, which exposes the unintegrated quark distribution in the virtual photon. For larger momenta kQsk_\perp\gtrsim Q_s, inelastic collisions take the leading role. They explore gluon saturation via multiple scattering, leading to a Gaussian distribution in kk_\perp centred around QsQ_s. When z(1z)Q2Q2z(1-z)Q^2\ll Q^2, this results in a Cronin peak in the nuclear modification factor (the RpAR_{pA} ratio) at moderate values of xx. With decreasing xx, this peak is washed out by the high-energy evolution and replaced by nuclear suppression (RpA<1R_{pA}<1) up to large momenta kQsk_\perp\gg Q_s. Still for z(1z)Q2Qs2z(1-z)Q^2\ll Q_s^2, we also compute SIDIS cross-sections integrated over kk_\perp. We find that both elastic and inelastic scattering are controlled by the black disk limit, so they yield similar contributions, of zeroth order in the QCD coupling.

Keywords

Cite

@article{arxiv.2012.08562,
  title  = {Saturation effects in SIDIS at very forward rapidities},
  author = {E. Iancu and A. H. Mueller and D. N. Triantafyllopoulos and S. Y. Wei},
  journal= {arXiv preprint arXiv:2012.08562},
  year   = {2022}
}

Comments

53 pages, 13 figures, 6 appendices. New appendix on double-logarithmic corrections, 2 additional figures and minor corrections. Published in JHEP

R2 v1 2026-06-23T20:59:50.149Z