Exclusive vector meson production in electron-ion collisions at the EIC, LHeC and FCC-$eh$
Victor P. Goncalves, Daniel E. Martins, Celso R. Sena

TL;DR
This paper predicts exclusive vector meson production in electron-ion collisions at future colliders, analyzing how different nuclear configurations and non-linear QCD effects influence cross sections and momentum distributions.
Contribution
It provides new predictions for vector meson production at EIC, LHeC, and FCC-$eh$, incorporating nucleon configurations and non-linear QCD corrections.
Findings
Cross sections vary with nuclear configurations and energy levels.
Transverse momentum distributions are sensitive to gluon saturation effects.
Results can help constrain high-energy QCD models.
Abstract
The exclusive vector meson production in electron-ion collisions for the energies of the future colliders is investigated. We present predictions for the coherent and incoherent and production in collisions considering the possible states of nucleon configurations in the nuclear wave function and taking into account of the non-linear corrections to the QCD dynamics. The cross sections and transverse momentum distributions are estimated assuming the energies of the Electron-Ion Collider (EIC), Large Hadron Electron Collider (LHeC) and Future Circular Collider (FCC-). Our results indicate that a future experimental analysis of these processes can shed light on the modeling of the gluon saturation effects and constrain the description of the QCD dynamics at high energies.
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