Spatial Modulation and Conductivities in Effective Holographic Theories
arXiv:1505.05171 · doi:10.1007/JHEP07(2015)024
Abstract
We analyze a class of bottom-up holographic models for low energy thermo-electric transport. The models we focus on belong to a family of Einstein-Maxwell-dilaton theories parameterized by two scalar functions, characterizing the dilaton self-interaction and the gauge coupling function. We impose spatially inhomogeneous lattice boundary conditions for the dilaton on the AdS boundary and study the resulting phase structure attained at low energies. We find that as we dial the scalar functions at our disposal (changing thus the theory under consideration), we obtain either (i) coherent metallic, or (ii) insulating, or (iii) incoherent metallic phases. We chart out the domain where the incoherent metals appear in a restricted parameter space of theories. We also analyze the optical conductivity, noting that non-trivial scaling behaviour at intermediate frequencies appears to only be possible for very narrow regions of parameter space.
40 pages, 23 figures. v2: fixed typos, added references. v3: minor clarifications. published version. v3: 41 pages, 24 figures. Addition of extra comments and a graph for clarification in appendix A.2, corrected regime mislabelling in appendix A.3. Results unchanged
References in corpus (11)
- Electrodynamics of Correlated Electron Materials
- 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
- Theory of universal incoherent metallic transport
- Momentum dissipation and effective theories of coherent and incoherent transport
- Thermoelectric DC conductivities from black hole horizons
- The thermoelectric properties of inhomogeneous holographic lattices
- Holographic Metals and Insulators with Helical Symmetry
- Memory matrix theory of magnetotransport in strange metals
- Thermo-electric transport in gauge/gravity models with momentum dissipation
- Conductivity of a strange metal: from holography to memory functions
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