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Thermal conductivity at a disordered quantum critical point

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arxiv 1508.04435 v1 pith:Z2QYGQIE submitted 2015-08-18 hep-th cond-mat.str-elgr-qc

Thermal conductivity at a disordered quantum critical point

classification hep-th cond-mat.str-elgr-qc
keywords disorderedconductivitythermalcriticalpointsquantumfixedholographic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Strongly disordered and strongly interacting quantum critical points are difficult to access with conventional field theoretic methods. They are, however, both experimentally important and theoretically interesting. In particular, they are expected to realize universal incoherent transport. Such disordered quantum critical theories have recently been constructed holographically by deforming a CFT by marginally relevant disorder. In this paper we find additional disordered fixed points via relevant disordered deformations of a holographic CFT. Using recently developed methods in holographic transport, we characterize the thermal conductivity in both sets of theories in 1+1 dimensions. The thermal conductivity is found to tend to a constant at low temperatures in one class of fixed points, and to scale as $T^{0.3}$ in the other. Furthermore, in all cases the thermal conductivity exhibits discrete scale invariance, with logarithmic in temperature oscillations superimposed on the low temperature scaling behavior. At no point do we use the replica trick.

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    Fully backreacted disordered charged black branes show disorder survives in the infrared of AdS4, producing residual resistivity, but decays in AdS3, indicating a Harris-criterion violation in strongly coupled systems.