Holographic conductivity of 1+1 dimensional systems in soft wall model
arXiv:1611.09996
Abstract
We study the optical conductivity of 1+1 dimensional systems using soft wall model in the bottom up approach of AdS/CFT (anti-de Sitter/conformal field theory) duality. We find the numerical results for optical conductivity and investigate the system using holographic model in the probe limit. The dependence of conductivity on chemical potential is also investigated. Further, we extend the soft wall model as a `no-wall' model by eliminating the dilaton background and study the response of the system in a simplified approach.
References in corpus (7)
- Building an AdS/CFT superconductor
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Linear Confinement and AdS/QCD
- Hall conductivity from dyonic black holes
- Holographic superconductors from the massive gravity
- 1+1-dimensional p-wave superconductors from intersecting D-branes
- Analytical approach to phase transitions in rotating and non-rotating 2D holographic superconductors