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arXiv:2609.02356·v1·High Energy Physics — Phenomenology

Recoil Geometry Unmasks Gluon Saturation in Forward Production

Wanchen Li · Ding Yu Shao · Shu-Yi Wei · Jian Zhou

Abstract

Gluon saturation produces characteristic transverse-momentum broadening in nuclei, but QCD radiation largely washes out this signature. We show that fiducial recoil subtraction turns detector acceptance into a transverse-momentum projector that unmasks the broadening in forward production. Subtracting the hadronic recoil measured in a chosen rapidity interval from the boson transverse momentum defines a residual momentum. At leading power, the radiative recoil in this interval cancels, while the residual momentum retains sensitivity to the small- nuclear field. Combining a CGC description of the small- target with soft-collinear effective theory (SCET) resummation for finite rapidity coverage, we find that a benchmark rapidity coverage lowers the effective hard scale from GeV to about of the Sudakov evolution. Increasing the saturation scale broadens the residual-momentum distribution and weakens recoil alignment, whereas wider coverage makes the proton--nucleus separation clearer in both observables. Detector geometry thus provides tunable control over perturbative recoil, enabling a probe of nonlinear small- QCD.

Comments: 7 pages, 4 figures and 4 pages of supplemental material