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Long range two-particle rapidity correlations in A+A collisions from high energy QCD evolution

High Energy Physics - Phenomenology 2014-11-20 v3 Nuclear Experiment Nuclear Theory

Abstract

Long range rapidity correlations in A+A collisions are sensitive to strong color field dynamics at early times after the collision. These can be computed in a factorization formalism \cite{GelisLV5} which expresses the nn-gluon inclusive spectrum at arbitrary rapidity separations in terms of the multi-parton correlations in the nuclear wavefunctions. This formalism includes all radiative and rescattering contributions, to leading accuracy in αsΔY\alpha_s\Delta Y, where ΔY\Delta Y is the rapidity separation between either one of the measured gluons and a projectile, or between the measured gluons themselves. In this paper, we use a mean field approximation for the evolution of the nuclear wavefunctions to obtain a compact result for inclusive two gluon correlations in terms of the unintegrated gluon distributions in the nuclear projectiles. The unintegrated gluon distributions satisfy the Balitsky-Kovchegov equation, which we solve with running coupling and with initial conditions constrained by existing data on electron-nucleus collisions. Our results are valid for arbitrary rapidity separations between measured gluons having transverse momenta p,q\qsp_\perp,q_\perp\gtrsim \qs, where \qs\qs is the saturation scale in the nuclear wavefunctions. We compare our results to data on long range rapidity correlations observed in the near-side ridge at RHIC and make predictions for similar long range rapidity correlations at the LHC.

Keywords

Cite

@article{arxiv.0911.2720,
  title  = {Long range two-particle rapidity correlations in A+A collisions from high energy QCD evolution},
  author = {K. Dusling and F. Gelis and T. Lappi and R. Venugopalan},
  journal= {arXiv preprint arXiv:0911.2720},
  year   = {2014}
}

Comments

26 pages, 9 figures

R2 v1 2026-06-21T14:11:25.967Z