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Probing gluon saturation with forward di-hadron correlations in proton-nucleus collisions

  • Paul Caucal
  • , Zhong Bo Kang
  • , Piotr Korcyl
  • , Farid Salazar
  • , Björn Schenke
  • , Tomasz Stebel
  • , Raju Venugopalan
  • , Wenbin Zhao
  • Nantes Université
  • University of California at Los Angeles
  • Stony Brook University
  • Jagiellonian University in Kraków
  • Temple University
  • Brookhaven National Lab
  • United States Department of Energy
  • Central China Normal University

Research output: Contribution to journalArticlepeer-review

Abstract

We present a detailed numerical investigation of semi-inclusive forward di-hadron production in proton–nucleus collisions employing the Color Glass Condensate effective theory. We focus on the regime where di-hadrons are produced nearly back-to-back in the transverse plane, thereby justifying a transverse-momentum-dependent factorization approach in terms of small- x gluon distributions. Our computation integrates several key elements: i) non-linear rapidity evolution via the Balitsky–Kovchegov equation with running coupling, ii) both perturbative and non-perturbative Sudakov resummation, and iii) a phenomenologically constrained model for the initial conditions for small- x gluon distributions. We compare this phenomenological framework to experimental data from the STAR Collaboration on azimuthal correlations in forward di-pion production in both proton–proton and proton–gold collisions. We analyze the systematic theoretical uncertainties associated with the saturation scales of nuclei at the initial scale for rapidity evolution and with those associated with the hadronization process. Finally, we make predictions for the kinematics anticipated to be covered by the ALICE Forward Calorimeter (FoCal) upgrade at the Large Hadron Collider.

Original languageEnglish
Article number140599
JournalPhysics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume879
DOIs
StatePublished - Aug 2026

Keywords

  • Color glass condensate
  • Di-hadron correlations
  • Focal
  • Gluon saturation

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