Fermion correlators in non-abelian holographic superconductors
arXiv:1002.4416 · doi:10.1007/JHEP11(2010)085
Abstract
We consider fermion correlators in non-abelian holographic superconductors. The spectral function of the fermions exhibits several interesting features such as support in displaced Dirac cones and an asymmetric distribution of normal modes. These features are compared to similar ones observed in angle resolved photoemission experiments on high T_c superconductors. Along the way we elucidate some properties of p-wave superconductors in AdS_4 and discuss the construction of SO(4) superconductors.
49 pages, 11 figures
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- Towards a Holographic Realization of Homes' Law
- Sum Rules from an Extra Dimension
- Fermions and D=11 Supergravity On Squashed Sasaki-Einstein Manifolds
- Holographic Fermi surfaces and bulk dipole couplings
- Maxwell-Chern-Simons Vortices and Holographic Superconductors
- Fragile Black Holes
- 1+1-dimensional p-wave superconductors from intersecting D-branes
- Characteristic length of a Holographic Superconductor with -wave gap
- Low temperature properties of holographic condensates
- Particle-hole instability in the holography