English

Multiparticle collectivity from initial state correlations in high energy proton-nucleus collisions

High Energy Physics - Phenomenology 2018-01-31 v2 Nuclear Experiment Nuclear Theory

Abstract

Qualitative features of multiparticle correlations in light-heavy ion (p+Ap+A) collisions at RHIC and LHC are reproduced in a simple initial state model of partons in the projectile coherently scattering off localized domains of color charge in the heavy nuclear target. These include i) the ordering of the magnitudes of the azimuthal angle nnth Fourier harmonics of two-particle correlations vn{2}v_n\{2\}, ii) the energy and transverse momentum dependence of the four-particle Fourier harmonic v2{4}v_2\{4\}, and iii) the energy dependence of four-particle symmetric cumulants measuring correlations between different Fourier harmonics. Similar patterns are seen in an Abelian version of the model, where we observe v2{2}>v2{4}v2{6}v2{8}v_2\{2\} > v_2\{4\}\approx v_2\{6\}\approx v_2\{8\} of two, four, six, and eight particle correlations. While such patterns are often interpreted as signatures of collectivity arising from hydrodynamic flow, our results provide an alternative description of the multiparticle correlations seen in p+Ap+A collisions.

Keywords

Cite

@article{arxiv.1705.00745,
  title  = {Multiparticle collectivity from initial state correlations in high energy proton-nucleus collisions},
  author = {Kevin Dusling and Mark Mace and Raju Venugopalan},
  journal= {arXiv preprint arXiv:1705.00745},
  year   = {2018}
}

Comments

7 pages, 5 figures. v2: Discussions and references added; version accepted for publication in Phys. Rev. Letters

R2 v1 2026-06-22T19:33:22.779Z