Resolving Lifshitz Horizons
Author(s) -
Sarah M. Harrison,
Shamit Kachru,
Huajia Wang
Publication year - 2012
Language(s) - English
Resource type - Reports
DOI - 10.2172/1039184
Subject(s) - physics , context (archaeology) , singularity , theoretical physics , scaling , curvature , horizon , dilaton , mathematical physics , geometry , mathematics , paleontology , astronomy , biology
Via the AdS/CFT correspondence, ground states of field theories at finite charge density are mapped to extremal black brane solutions. Studies of simple gravity + matter systems in this context have uncovered wide new classes of extremal geometries. The Lifshitz metrics characterizing field theories with non-trivial dynamical critical exponent z {ne} 1 emerge as one common endpoint in doped holographic toy models. However, the Lifshitz horizon exhibits mildly singular behaviour - while curvature invariants are finite, there are diverging tidal forces. Here we show that in some of the simplest contexts where Lifshitz metrics emerge, Einstein-Maxwell-dilaton theories, generic corrections lead to a replacement of the Lifshitz metric, in the deep infrared, by a re-emergent AdS{sub 2} x R{sup 2} geometry. Thus, at least in these cases, the Lifshitz scaling characterizes the physics over a wide range of energy scales, but the mild singularity is cured by quantum or stringy effects
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