arXiv · 2011.07330
Holographic p-wave superconductivity from higher derivative theory
Abstract
We construct a holographic SU(2) p-wave superconductor model with Weyl corrections. The high derivative (HD) terms do not seem to spoil the generation of the p-wave superconducting phase. We mainly study the properties of AC conductivity, which is absent in holographic SU(2) p-wave superconductor with Weyl corrections. The conductivities in superconducting phase exhibit obvious anisotropic behaviors. Along $y$ direction, the conductivity $\sigma_{yy}$ is similar to that of holographic s-wave superconductor. The superconducting energy gap exhibits a wide extension. For the conductivity $\sigma_{xx}$ along $x$ direction, the behaviors of the real part in the normal state are closely similar to that of $\sigma_{yy}$. However, the anisotropy of the conductivity obviously shows up in the superconducting phase. A Drude-like peak at low frequency emerges in $Re\sigma_{xx}$ once the system enters into the superconducting phase, regardless of the behaviors in normal state.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yan Liu, Guoyang Fu, Hai-Li Li, Jian-Pin Wu, Xin Zhang. 2020-11-14. Holographic p-wave superconductivity from higher derivative theory. https://doi.org/10.1140/epjc%2Fs10052-021-09323-1
Cite the original work for its findings. Save a collection to share your selection of sources.