Fermionic phase transition induced by the effective impurity in holography
arXiv:1507.03121 · doi:10.1007/JHEP11(2015)134
Abstract
We investigate the holographic fermionic phase transition induced by the effective impurity in holography, which is introduced by massless scalar fields in Einstein-Maxwell-massless scalar gravity. We obtain a phase diagram in plane separating the Fermi liquid phase and the non-Fermi liquid phase.
17 pages, 9 figures
References in corpus (13)
- Real-time response in AdS/CFT with application to spinors
- Holographic Polarons, the Metal-Insulator Transition and Massive Gravity
- Coherent/incoherent metal transition in a holographic model
- Dynamically Generated Gap from Holography: Mottness from a Black Hole
- A Simple Holographic Superconductor with Momentum Relaxation
- Anisotropic plasma at finite chemical potential
- Phases of holographic superconductors with broken translational symmetry
- Thermoelectric DC conductivities with momentum dissipation from higher derivative gravity
- Anisotropic plasma with a chemical potential and scheme-independent instabilities
- Holographic fermionic system with dipole coupling on Q-lattice
- Dipole Coupling Effect of Holographic Fermion in the Background of Charged Gauss-Bonnet AdS Black Hole
- Dynamically generated gap from holography in the charged black brane with hyperscaling violation
- Formation of Fermi surfaces and the appearance of liquid phases in holographic theories with hyperscaling violation
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