Competition between s-wave order and d-wave order in holographic superconductors
arXiv:1405.0382 · doi:10.1007/JHEP08(2014)164
Abstract
We study competition between s-wave order and d-wave order through two holographic superconductor models. We find that once the coexisting phase appears, it is always thermodynamically favored, and that the coexistence phase is narrow and one condensate tends to kill the other. The phase diagram is constructed for each model in terms of temperature and the ratio of charges of two orders. We further compare the behaviors of some thermodynamic quantities, and discuss the different aspects and identical ones between two models.
3 figures added, accepted by JHEP
References in corpus (6)
- Building an AdS/CFT superconductor
- Striped superconductors: How the cuprates intertwine spin, charge and superconducting orders
- Electron Correlation and Pairing States in Superconductors without Inversion Symmetry
- Gauge gravity duality for d-wave superconductors: prospects and challenges
- Holographic Entanglement Entropy in P-wave Superconductor Phase Transition
- Competing Holographic Orders
Cited by in corpus (9)
- Competing s-wave orders from Einstein-Gauss-Bonnet gravity
- Spontaneous current in an holographic s+p superfluid
- Diving into a holographic multi-band superconductor
- Holographic quantum phase transitions and interacting bulk scalars
- Holographic multi-condensate with nonlinear terms
- Uniform quenching processes in a holographic s+p model with reentrance
- Interior structure of the holographic s + p superconductor and chaotic-stable transition near the black hole singularity
- Momentum dependent gap in holographic superconductors revisited
- Phase transitions in a holographic s+d model from the 4D Einstein-Gauss-Bonnet gravity