Stability of Asymptotically Schroedinger RN Black Hole and Superconductivity
arXiv:0911.3806 · doi:10.1007/JHEP04(2010)048
Abstract
We perform a perturbative (near-critical) analysis of the stability of an asymptotically Schroedinger Reissner-Nordstrom black hole with respect to generation of charged scalar hair. We find that apart from the expected instability at low temperatures typical of holographic models of superconductivity, in the presence of certain operators a similar instability appears as well at high temperatures. We propose that the reason for such a phase diagram could be due to peculiar features of the dual gauge theory or the failure of the model to provide a consistent holographic dual of a non-relativistic superconductor.
18 pages, 6 figures
References in corpus (7)
- Building an AdS/CFT superconductor
- Toward an AdS/cold atoms correspondence: a geometric realization of the Schroedinger symmetry
- Gravity duals for non-relativistic CFTs
- Holographic superconductivity in M-Theory
- Superconductors from Superstrings
- Non-relativistic metrics with extremal limits
- Charged Schrodinger Black Holes
Cited by in corpus (8)
- Holographic superconductors in the Born-Infeld electrodynamics
- Stability of Horava-Lifshitz Black Holes in the Context of AdS/CFT
- Hyperscaling violation : a unified frame for effective holographic theories
- Schrodinger Fermi Liquids
- Towards a Non-Relativistic Holographic Superfluid
- Holographic thermalization from non relativistic branes
- Holographic charge diffusion in non relativistic branes
- Exciton-driven quantum phase transitions in holography