One-dimensional holographic superconductor from AdS_3/CFT_2 correspondence
Abstract
We obtain a holographical description of a superconductor by using the d=2 case of the AdS_{d+1}/CFT_d correspondence. The gravity system is a (2+1)-dimensional AdS black hole coupled to a Maxwell field and charged scalar. The dual (1+1)-dimensional superconductor will be strongly correlated. The characteristic exponents for vector perturbations at the boundary degenerate, which implies that d=2 is a critical dimension and the Green's function needs to be regularized. In the normal phase, the current-current correlation function and the conductivity can be analytically solved at zero chemical potential. The dc conductivity can be analytically solved at finite chemical potential. When we add a scalar hair to the black hole, a charged condensate happens at low temperatures. We compare our results with higher-dimensional cases.
Keywords
Cite
@article{arxiv.1008.3904,
title = {One-dimensional holographic superconductor from AdS_3/CFT_2 correspondence},
author = {Jie Ren},
journal= {arXiv preprint arXiv:1008.3904},
year = {2010}
}
Comments
22 pages, 7 figures; v2: minor corrections; v3: published version