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Deconstructing holographic liquids

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Published 22 July 2011 Published under licence by IOP Publishing Ltd
, , Focus on Strongly Correlated Quantum Fluids - from Ultracold Quantum Gases to QCD Plasmas Citation Dominik Nickel and Dam T Son 2011 New J. Phys. 13 075010 DOI 10.1088/1367-2630/13/7/075010

1367-2630/13/7/075010

Abstract

We argue that there exist simple effective field theories describing the long-distance dynamics of holographic liquids. The degrees of freedom responsible for the transport of charge and energy–momentum are Goldstone modes. These modes are coupled to a strongly coupled infrared (IR) sector through emergent gauge and gravitational fields. The IR degrees of freedom are described holographically by the near-horizon part of the metric, whereas the Goldstone bosons are described by a field-theoretical Lagrangian. In the cases where the holographic dual involves a black hole, this picture allows for a direct connection between the holographic prescription where currents live on the boundary and the membrane paradigm where currents live on the horizon. The zero-temperature sound mode in the D3–D7 system is also re-analyzed and re-interpreted within this formalism.

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10.1088/1367-2630/13/7/075010