Magnetothermoelectric DC conductivities from holography models with hyperscaling factor in Lifshitz spacetime
arXiv:1709.08428 · doi:10.1016/j.nuclphysb.2017.09.016
Abstract
We investigate an Einstein-Maxwell-Dilaton-Axion holographic model and obtain two branches of a charged black hole solution with a dynamic exponent and a hyperscaling violation factor when a magnetic field presents. The magnetothermoelectric DC conductivities are then calculated in terms of horizon data by means of holographic principle. We find that linear temperature dependence resistivity and quadratic temperature dependence inverse Hall angle can be achieved in our model. The well-known anomalous temperature scaling of the Nernst signal and the Seebeck coefficient of cuprate strange metals are also discussed.
1+23 pages, 4 figures, references added
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- Linear- resistivity from low to high temperature: axion-dilaton theories
- Thermo-electric Transport of Dyonic Gubser-Rocha Black Holes
- Thermoelectric DC conductivities in hyperscaling violating Lifshitz theories
- New black holes with hyperscaling violation and transports of quantum critical points with magnetic impurity
- Towards a sound massive cosmology
- Deep learning-based holography for T-linear resistivity
- Doped Holographic Superconductors in Gubser-Rocha model
- Holography of electrically and magnetically charged black branes
- Hyperscaling violating geometry with magnetic field and DC conductivity
- Temperature Dependence of In-plane Resistivity and Inverse Hall Angle in NLED Holographic Model