Quantum Corrections to $\eta/s$ from JT Gravity
Abstract
We revisit the computation of the shear viscosity to entropy ratio at finite chemical potential in a holographic model that takes into account the quantum fluctuations in the IR region of near-extremal black branes. Such quantum corrections can be computed from JT gravity and generate non-trivial temperature dependence for , which deviates from the universal result. In the semi-classical regime, attains a minimum which is below the KSS bound, generated by the presence of the quantum effects. In the quantum regime at lower temperatures, increases and is well above the KSS bound. We also compare the shear viscosity to the quantum-corrected absorption cross-section of near-extremal black holes, and find agreement.
Keywords
Cite
@article{arxiv.2510.21602,
title = {Quantum Corrections to $\eta/s$ from JT Gravity},
author = {Sera Cremonini and Li Li and Xiao-Long Liu and Jun Nian},
journal= {arXiv preprint arXiv:2510.21602},
year = {2026}
}
Comments
36 pages, 5 Figures. Improved the discussion and fixed mistakes in the computation of eta in the deep quantum regime. The qualitative results remain unchanged. Added Appendix A.3