Analytical Holographic Superconductor with Backreaction Using AdS3/CFT2
arXiv:1305.5163 · doi:10.1007/s10773-013-1569-4
Abstract
The holographic model for a two-dimensional superconductor has been investigated by considering the three-dimensional gravity in the bulk. To find the critical temperature, we used the Sturm-Liouville variational method. Where as the same method is applied for calculating the condensation of the dual operators on the boundary. We included the back reactions on the metric by a combination of the perturbation method of the fields with respect to the small parameter and then applying the variational integrals on the resulting equations of the motion. The critical temperature has been successfully obtained on the backreaction effects, and we showed that it dropped with a rise in the backreaction of the fields, and it makes the condensation harder. We can use our analytical results to support the numerical data which was reported previously.
Published in "Int J Theor Phys"
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- One-dimensional backreacting holographic superconductors with exponential nonlinear electrodynamics
- Holographic superconductors with Weyl corrections
- One-dimensional backreacting holographic p-wave superconductors
- Conductivity of the one-dimensional holographic p-wave superconductors in the presence of nonlinear electrodynamics
- Energy Loss of a Heavy Particle near 3D Charged Rotating Hairy Black Hole
- Holographic P-wave Superconductors in 1+1 Dimensions
- Analytical study of the holographic superconductor from higher derivative theory
- Universality of critical magnetic field in holographic superconductor
- Non-equilibrium phase and entanglement entropy in 2D holographic superconductors via Gauge-String duality