Gauss-Bonnet Holographic Superconductors
arXiv:1009.1991 · doi:10.1007/JHEP12(2010)029
Abstract
We study holographic superconductors in five dimensional Einstein-Gauss-Bonnet gravity both numerically and analytically. We find the critical temperature of the superconductor decreases as backreaction is increased, although the effect of the Gauss-Bonnet coupling is more subtle: the critical temperature first decreases then increases as the coupling tends towards the Chern-Simons value in a backreaction dependent fashion. We compute the conductivity of the system, finding the energy gap, and show that the effect of both backreaction and higher curvature is to increase the gap ratio , thus there is no universal relation for these superconductors.
19 pages, 7 figures, typos corrected, reference added
References in corpus (11)
- Building an AdS/CFT superconductor
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Lectures on Holographic Superfluidity and Superconductivity
- Holographic Superconductors with Various Condensates
- Holographic superconductivity in M-Theory
- Superconductors from Superstrings
- A Holographic Superconductor in an External Magnetic Field
- Towards a Novel no-hair Theorem for Black Holes
- Stability of Lovelock Black Holes under Tensor Perturbations
- Exploring colourful holographic superconductors
- Stability of Holographic Superconductors
Cited by in corpus (19)
- The 3+1 holographic superconductor with Weyl corrections
- Holographic Superconductors in Gauss-Bonnet gravity with Born-Infeld electrodynamics
- Entanglement Entropy and Wilson Loop in Stückelberg Holographic Insulator/Superconductor Model
- Entanglement Entropy and Complexity for One-Dimensional Holographic Superconductors
- A Note on Gauss-Bonnet Holographic Superconductors
- Analytical study on holographic superconductors with backreactions
- Thermoelectric DC conductivities with momentum dissipation from higher derivative gravity
- Chaos from the ring string in Gauss-Bonnet black hole in space
- Effects of Backreaction on Power-Maxwell Holographic Superconductors in Gauss-Bonnet Gravity
- Surprising Connections Between General Relativity and Condensed Matter
- Holographic superconductors in a model of non-relativistic gravity
- Analytic study on backreacting holographic superconductors with dark matter sector
- d-Wave holographic superconductors with backreaction in external magnetic fields
- Dipole Coupling Effect of Holographic Fermion in the Background of Charged Gauss-Bonnet AdS Black Hole
- Magnetic field in holographic superconductor with dark matter sector
- Competing s-wave orders from Einstein-Gauss-Bonnet gravity
- Holographic entanglement entropy in two-order insulator/superconductor transitions
- Holographic fermions in charged Gauss-Bonnet black hole
- Lovelock Branes