Conductivity of weakly disordered strange metals: from conformal to hyperscaling-violating regimes
arXiv:1411.3331 · doi:10.1016/j.nuclphysb.2015.01.017
Abstract
We present a semi-analytic method for constructing holographic black holes that interpolate from anti-de Sitter space to hyperscaling-violating geometries. These are holographic duals of conformal field theories in the presence of an applied chemical potential, , at a non-zero temperature, , and allow us to describe the crossover from `strange metal' physics at , to conformal physics at . Our holographic technique adds an extra gauge field and exploits structure of the Einstein-Maxwell system to manifestly find 1-parameter families of solutions of the Einstein-matter system in terms of a small family of functions, obeying a nested set of differential equations. Using these interpolating geometries, we re-consider holographically some recent questions of interest about hyperscaling-violating field theories. Our focus is a more detailed holographic computation of the conductivity of strange metals, weakly perturbed by disorder coupled to scalar operators, including both the average conductivity as well as sample-to-sample fluctuations. Our findings are consistent with previous scaling arguments, though we point out logarithmic corrections in some special (holographic) cases. We also discuss the nature of superconducting instabilities in hyperscaling-violating geometries with appropriate choices of scalar couplings.
31 pages, 6 figures. v2: published version
References in corpus (18)
- Building an AdS/CFT superconductor
- Lectures on Holographic Superfluidity and Superconductivity
- Theory of the Nernst effect near quantum phase transitions in condensed matter, and in dyonic black holes
- Effective Holographic Theories for low-temperature condensed matter systems
- Are non-Fermi-liquids stable to Cooper pairing?
- Holography without translational symmetry
- Quantum Critical Transport and the Hall Angle
- Impure AdS/CFT
- Holographic Metals and Insulators with Helical Symmetry
- Thermo-electric transport in gauge/gravity models with momentum dissipation
- Analytic DC thermo-electric conductivities in holography with massive gravitons
- Metal-insulator transition in holography
- DC resistivity at the onset of spin density wave order in two-dimensional metals
- Spectral function of a localized fermion coupled to the Wilson-Fisher conformal field theory
- Strange Metals in One Spatial Dimension
- Intermediate scalings in holographic RG flows and conductivities
- Compressible quantum phases from conformal field theories in 2+1 dimensions
- Monopole correlations in holographically flavored liquids
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- Boltzmann electronic dc transport in multiorbital weakly-disordered crystals
- Entanglement and Excitations in Gauge/Gravity Duality