Semi-local quantum criticality in string/M-theory
Abstract
Semi-local quantum critical behaviour in spacetime dimensions can be holographically described by metrics that are conformal to , with the conformal factor characterised by a parameter . We analyse such "-geometries" in a top-down setting by focussing on the truncation of D=4 N=8 gauged supergravity. The model has extremal black hole solutions carrying three non-zero electric or magnetic charges which approach in the UV and an geometry in the IR. Adding a fourth charge provides a mechanism to resolve the singularity of the -geometry, replacing it with an factor in the IR, while maintaining a large region where the -geometry scaling is approximately valid. Some of the magnetically charged black hole solutions preserve supersymmetry while others just preserve it in the IR. Finally, we show that -geometries, with various values of , can be obtained from the dimensional reduction of geometries consisting of or Lifshitz geometries with flat directions.
Cite
@article{arxiv.1212.1462,
title = {Semi-local quantum criticality in string/M-theory},
author = {Aristomenis Donos and Jerome P. Gauntlett and Christiana Pantelidou},
journal= {arXiv preprint arXiv:1212.1462},
year = {2015}
}
Comments
26 pages, 4 figures. References added, minor typos corrected. Version published in JHEP