Absence of power-law mid-infrared conductivity in gravitational crystals

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作者
Brandon W. Langley
Garrett Vanacore
Philip W. Phillips
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[1] University of Illinois,Department of Physics and Institute for Condensed Matter Theory
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Holography and condensed matter physics (AdS/CMT); Gauge-gravity correspondence; AdS-CFT Correspondence;
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摘要
We compute conductivities of strongly-interacting and non-uniform charge densities dual to inhomogeneous anti-de Sitter-black hole spacetimes. Backreacting bulk scalars with periodic boundary profiles, we construct generalizations of ReissnerNordström-AdS that interpolate between those used in two previous studies — one that reports power-law scaling for the boundary optical conductivity and one that does not. We find no evidence for power-law scaling of the conductivity, thereby corroborating the previous negative result that gravitational crystals are insufficient to generate the power-law mid-infrared conductivity observed in cuprate superconductors.
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