English

The unreasonable effectiveness of hydrodynamics in heavy ion collisions

Nuclear Theory 2016-11-23 v1 High Energy Physics - Phenomenology

Abstract

Event-by-event hydrodynamic simulations of AA and pA collisions involve initial energy densities with large spatial gradients. This is associated with the presence of large Knudsen numbers (Kn1K_n\approx 1) at early times, which may lead one to question the validity of the hydrodynamic approach in these rapidly evolving, largely inhomogeneous systems. A new procedure to smooth out the initial energy densities is employed to show that the initial spatial eccentricities, εn\varepsilon_n, are remarkably robust with respect to variations in the underlying scale of initial energy density spatial gradients, λ\lambda. For sNN=2.76\sqrt{s_{NN}}=2.76 TeV LHC initial conditions generated by the MCKLN code, εn\varepsilon_n (across centralities) remains nearly constant if the fluctuation scale varies by an order of magnitude, i.e., when λ\lambda varies from 0.1 to 1 fm. Given that the local Knudsen number Kn1λK_n\approx \frac{1}{\lambda}, the robustness of the initial eccentricities with respect to changes in the fluctuation scale suggests that the vn's cannot be used to distinguish between events with large KnK_n from events where KnK_n is in the hydrodynamic regime. We use the 2+1 Lagrangian hydrodynamic code v-USPhydro to show that this is indeed the case: anisotropic flow coefficients computed within event-by-event viscous hydrodynamics are only sensitive to long wavelength scales of order 1ΛQCD1\frac{1}{\Lambda_{QCD}}\approx 1 fm and are incredibly robust with respect to variations in the initial local Knudsen number. This robustness can be used to justify the somewhat unreasonable effectiveness of the nearly perfect fluid paradigm in heavy ion collisions.

Keywords

Cite

@article{arxiv.1512.07135,
  title  = {The unreasonable effectiveness of hydrodynamics in heavy ion collisions},
  author = {Jacquelyn Noronha-Hostler and Jorge Noronha and Miklos Gyulassy},
  journal= {arXiv preprint arXiv:1512.07135},
  year   = {2016}
}

Comments

Proceedings of the 25th International Conference on Ultrarelativistic Nucleus-Nucleus Collisions (Quark Matter 2015), Kobe, Japan,4 pages, 4 figures