Near-extremal holographic charge correlators
Abstract
We analytically compute the low-temperature charge correlators in near-extremal black holes with a planar horizon and an infrared extremal geometry, finding excellent agreement with numerical calculations. The analytical result consistently describes the crossover between the hydrodynamic diffusive regime at low frequencies and wavenumbers, and the quantum, zero-temperature regime at high frequencies and wavenumbers. We analytically resolve the successive collisions between the diffusive pole and the non-hydrodynamic poles sourced by the infrared geometry. We demonstrate that in the limit, a pair of gapless poles survive with a dispersion relation . The nonanalytic contributions arise from the interplay with the branch cut formed by the condensation of the non-hydrodynamic poles. The real part is caused by the `snatching' of one of the non-hydrodynamic poles by the hydrodynamic diffusive pole.
Keywords
Cite
@article{arxiv.2506.11974,
title = {Near-extremal holographic charge correlators},
author = {Blaise Goutéraux and David M. Ramirez and Mikel Sanchez-Garitaonandia and Clément Supiot},
journal= {arXiv preprint arXiv:2506.11974},
year = {2025}
}
Comments
v2: minor edits, typos fixed and references added