p-Wave holographic superconductors with Weyl corrections
arXiv:1204.1246 · doi:10.1209/0295-5075/97/61001
Abstract
We study the (3+1) dimensional p-wave holographic superconductors with Weyl corrections both numerically and analytically. We describe numerically the behavior of critical temperature with respect to charge density in a limited range of Weyl coupling parameter and we find in general the condensation becomes harder with the increase of parameter . In strong coupling limit of Yang-Mills theory, we show that the minimum value of obtained from analytical approach is in good agreement with the numerical results, and finally show how we got remarkably a similar result in the critical exponent 1/2 of the chemical potential and the order parameter with the numerical curves of superconductors.
7 pages, 1 figure, 1 table. One refrence added, presentations improved
References in corpus (10)
- Building an AdS/CFT superconductor
- Lectures on Holographic Superfluidity and Superconductivity
- Holographic Superconductors with Various Condensates
- Holographic model of superfluidity
- Colorful horizons with charge in anti-de Sitter space
- Superconductivity from gauge/gravity duality with flavor
- An Analytic Holographic Superconductor
- A Rotating Holographic Superconductor
- Flavor Superconductivity from Gauge/Gravity Duality
- The 3+1 holographic superconductor with Weyl corrections
Cited by in corpus (11)
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- Analytical study on holographic superconductors with backreactions
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- Lifshitz effects on holographic -wave superfluid
- Holographic superconductivity from higher derivative theory
- Dynamical evolution of a vector field perturbation coupling to Einstein tensor
- Holographic response from higher derivatives with homogeneous disorder
- Conductivity of the one-dimensional holographic p-wave superconductors in the presence of nonlinear electrodynamics
- Gauss-Bonnet holographic superconductors in lower-dimensions
- Holographic superconductors in the AdS black hole with a magnetic charge
- Higher derivatives driven symmetry breaking in holographic superconductors