Conductivity of holographic superconductors in Born-Infeld electrodynamics
arXiv:1710.09630 · doi:10.1016/j.nuclphysb.2018.05.024
Abstract
In this paper, we have analytically computed the conductivity of holographic superconductors in the framework of Born-Infeld electrodynamics taking into account the backreaction of the matter fields on the bulk spacetime metric. The effect of the Born-Infeld electrodynamics is incorporated in the metric. The band gap energy is found to be corrected by the backreaction and Born-Infeld parameters. The conductivity expression is then compared with that obtained from a self consistent approach.
14 pages, New table added
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- Holographic insulator/superconductor phase transition in higher dimensional Gauss-Bonnet gravity
- Structure and thermodynamics of charged nonrotating black holes in higher dimensions
- Optical properties of Born-Infeld-dilaton-Lifshitz holographic superconductors
- Backreacting holographic superconductors from the coupling of a scalar field to the Einstein tensor
- An analytical approach to compute conductivity of p-wave holographic superconductors
- Noncommutative -wave holographic superconductors
- Noncommutative effects of charged black hole on holographic superconductors
- Holographic superconductor with nonlinear Born - Infeld-type electrodynamics
- Effects of massive gravity on -wave holographic superconductor
- Holographic insulator/superconductor phase transition by matching method and thermodynamic geometry
- Meissner effect in holographic superconductors with Dirac-Born-Infeld electrodynamics