arXiv · 0912.4928
Superconducting Coherence Length and Magnetic Penetration Depth of a p-wave Holographic Superconductor
Abstract
A classical SU(2) Einstein-Yang-Mills theory in 3+1 dimensional anti-de Sitter spacetime is believed to be dual to a p-wave superconductor in 2+1 dimensional flat spacetime. In order to calculate the superconductiong coherence length $ξ$ of the holographic superconductor near the superconducting phase transition point, we study the perturbation of the gravity theory analytically. The superconductiong coherence length $ξ$ is found to be proportional to $(1-T/T_c)^{-1/2}$ near the critical temperature $T_c$. We also obtain the magnetic penetration depth $λ\propto(T_c-T)^{1/2}$ by adding a small external homogeneous magnetic field. The results agree with the Ginzburg-Landau theory.
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Hua-Bi Zeng, Zhe-Yong Fan, Hong-Shi Zong. 2010-04-16. Superconducting Coherence Length and Magnetic Penetration Depth of a p-wave Holographic Superconductor. https://doi.org/10.1103/physrevd.81.106001
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