Higher derivative holography and temperature dependence of QGP viscosities
Abstract
Recent Bayesian analyses of heavy ion collision data have established a non-trivial temperature dependence of the shear and bulk viscosity per entropy. Motivated by this, we consider higher derivative corrections to realistic, bottom-up holographic models of quark-gluon plasma based on five-dimensional Einstein-dilaton theories and determine the dilaton potentials in the higher derivative terms by matching the Bayesian analyses. A byproduct of our analysis is the bulk viscosity that follows from the holographic V-QCD theory. Higher derivative corrections when treated perturbatively lead to tension with existing data. We investigate possible resolutions.
Cite
@article{arxiv.2502.19195,
title = {Higher derivative holography and temperature dependence of QGP viscosities},
author = {Thomas Apostolidis and Umut Gürsoy and Edwan Préau},
journal= {arXiv preprint arXiv:2502.19195},
year = {2025}
}
Comments
19 pages + Appendix. 11 figures. v2 includes the latest results from Trajectum in arXiv:2305.00015. v3 minor changes; version accepted for publication in JHEP