Coupling constant corrections in a holographic model of heavy ion collisions
Abstract
We initiate a holographic study of coupling-dependent heavy ion collisions by analysing for the first time the effects of leading-order, inverse coupling constant corrections. In the dual description, this amounts to colliding gravitational shock waves in a theory with curvature-squared terms. We find that at intermediate coupling, nuclei experience less stopping and have more energy deposited near the lightcone. When the decreased coupling results in an 80% larger shear viscosity, the time at which hydrodynamics becomes a good description of the plasma created from high energy collisions increases by 25%. The hydrodynamic phase of the evolution starts with a wider rapidity profile and smaller entropy.
Keywords
Cite
@article{arxiv.1610.08976,
title = {Coupling constant corrections in a holographic model of heavy ion collisions},
author = {Sašo Grozdanov and Wilke van der Schee},
journal= {arXiv preprint arXiv:1610.08976},
year = {2017}
}
Comments
V2: 6 pages, 5 figures. Second-order coupling constant corrections added. Version appeared in PRL