Gluon dipole factorisation for diffractive dijets
E. Iancu, A.H. Mueller, D.N. Triantafyllopoulos, S.Y. Wei

TL;DR
This paper develops a gluon dipole factorisation framework for diffractive dijet production in deep inelastic scattering at small x, linking the colour dipole model with collinear factorisation and emphasizing gluon saturation effects.
Contribution
It introduces a factorisation approach for 2+1 jet diffractive processes, connecting the colour dipole picture with collinear factorisation through an effective gluon-gluon dipole.
Findings
The cross-section factorises into hard and semi-hard components.
The semi-hard gluon scattering is described by an unintegrated gluon distribution.
The approach highlights the role of gluon saturation in diffractive dijet production.
Abstract
Within the colour dipole picture for deep inelastic scattering at small Bjorken , we study the production of a pair of relatively hard jets via coherent diffraction. By "relatively hard" we mean that the transverse momenta of the two jets -- the quark () and the antiquark () generated by the decay of the virtual photon -- are much larger than the target saturation momentum evaluated at the rapidity gap . We argue that the typical final-state configurations are such that the hard dijets are accompanied by a semi-hard gluon jet, with a transverse momentum of the order of . The presence of this third jet ensures that the scattering is strong and thus avoids the strong suppression of exclusive (hard) dijet production due to colour transparency. For such "2+1" jet configurations, we demonstrate that both the…
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