Black Hole Thermodynamics and Heavy Fermion Metals
arXiv:1003.5361 · doi:10.1007/JHEP08(2010)027
Abstract
Heavy fermion alloys at critical doping typically exhibit non-Fermi-liquid behavior at low temperatures, including a logarithmic or power law rise in the ratio of specific heat to temperature as the temperature is lowered. Anomalous specific heat of this type is also observed in a simple class of gravitational dual models that exhibit anisotropic scaling with dynamical critical exponent z > 1.
17 pages, 4 figures; v2: added references; v3: matches published version
References in corpus (9)
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- Lectures on Holographic Superfluidity and Superconductivity
- Quantum criticality
- Towards strange metallic holography
- Zero Temperature Limit of Holographic Superconductors
- Black holes in asymptotically Lifshitz spacetime
- Holographic stress tensor for non-relativistic theories
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Cited by in corpus (18)
- Effective Holographic Theories for low-temperature condensed matter systems
- Hidden Fermi surfaces in compressible states of gauge-gravity duality
- Controlling mass and energy diffusion with metamaterials
- A model of a Fermi liquid using gauge-gravity duality
- Holographic Renormalization for Asymptotically Lifshitz Spacetimes
- Charged Lifshitz Black Holes
- Holographic superconductors with Lifshitz scaling
- Fermi surfaces in N=4 Super-Yang-Mills theory
- Strange Metals in One Spatial Dimension
- A holographic model for the fractional quantum Hall effect
- Notes on Properties of Holographic Strange Metals
- Fermi surface behavior in the ABJM M2-brane theory
- Lifshitz symmetry: Lie algebras, spacetimes and particles
- Minding the Gap in N=4 Super-Yang-Mills
- Thermodynamics of Dyonic Lifshitz Black Holes
- Charged Lifshitz black holes from general covariance breaking
- Gauss-Bonnet Black Holes and Heavy Fermion Metals
- Broken Lifshitz invariance, spin waves and hydrodynamics