English

Sensitivity of flow harmonics to sub-nucleon scale fluctuations in heavy ion collisions

Nuclear Theory 2016-02-17 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

In this paper a new procedure to smooth out the initial energy densities of hydrodynamics is employed to show that the initial spatial eccentricities εm,n\varepsilon_{m,n}, which drive the final state flow harmonics vnv_n, are remarkably robust with respect to variations of the underlying scale of initial energy density spatial gradients, λ\lambda, in nucleus-nucleus collisions. For s=2.76\sqrt{s}=2.76 TeV Pb+Pb collisions, the εm,n\varepsilon_{m,n}'s (across centrality classes) change by less than 10%10\% if the scale of fluctuations is varied from 0.10.1 to 11 fm. We show, using the 2+1 Lagrangian hydrodynamic code, v-USPhydro, that this robustness is transferred to the final vnv_n's computed within event by event viscous hydrodynamics. This indicates that the flow harmonics in nucleus-nucleus collisions are not yet particularly sensitive to the underlying microscopic sub-nucleon physics below the confinement scale. On the other hand, the eccentricities of top 1%1\% high multiplicity s=5.02\sqrt{s}=5.02 TeV p+Pb collisions are found to be very sensitive to sub-nucleonic scale fluctuations, which should be contrasted with the robustness found in peripheral Pb+Pb collisions with the same multiplicity.

Keywords

Cite

@article{arxiv.1508.02455,
  title  = {Sensitivity of flow harmonics to sub-nucleon scale fluctuations in heavy ion collisions},
  author = {Jacquelyn Noronha-Hostler and Jorge Noronha and Miklos Gyulassy},
  journal= {arXiv preprint arXiv:1508.02455},
  year   = {2016}
}

Comments

22 pages, 17 figures; references added