English

Observable signatures of initial state momentum anisotropies in nuclear collisions

Nuclear Theory 2020-11-11 v1 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We show that the correlation between the elliptic momentum anisotropy, v2v_2, and the average transverse momentum, [pT][p_T], at fixed multiplicity in small system nuclear collisions carries information on the origin of the observed momentum anisotropy. A calculation using a hybrid IP-Glasma+\textsc{Music}+UrQMD model that includes contributions from final state response to the initial geometry as well as initial state momentum anisotropies of the Color Glass Condensate, predicts a characteristic sign change of the correlator ρ^(v22,[pT])\hat{\rho}(v_2^2,[p_T]) as a function of charged particle multiplicity in p+Au and d+Au collisions at s=200GeV\sqrt{s}=200\,{\rm GeV}, and p+Pb collisions at s=5.02TeV\sqrt{s}=5.02\,{\rm TeV}. This sign change is absent in calculations without initial state momentum anisotropies. The model further predicts a qualitative difference between the centrality dependence of ρ^(v22,[pT])\hat{\rho}(v_2^2,[p_T]) in Au+Au collisions at s=200GeV\sqrt{s}=200\,{\rm GeV} and Pb+Pb collisions at s=5.02TeV\sqrt{s}=5.02\,{\rm TeV}, with only the latter showing a sign change in peripheral events. Predictions for O+O collisions at different collision energy show a similar behavior. Experimental observation of these distinct qualitative features of ρ^(v22,[pT])\hat{\rho}(v_2^2,[p_T]) in small and large systems would constitute strong evidence for the presence and importance of initial state momentum anisotropies predicted by the Color Glass Condensate effective theory.

Keywords

Cite

@article{arxiv.2006.15721,
  title  = {Observable signatures of initial state momentum anisotropies in nuclear collisions},
  author = {Giuliano Giacalone and Bjoern Schenke and Chun Shen},
  journal= {arXiv preprint arXiv:2006.15721},
  year   = {2020}
}

Comments

6 pages, 3 figures