Building a Holographic Superconductor with Higher-derivative Couplings
Abstract
We discuss the gravitational dual of a holographic superconductor consisting of a U(1) gauge field, a complex scalar field coupled to a charged AdS black hole and a higher-derivative coupling between the U(1) gauge field and the scalar with coupling constant \eta. In the presence of a magnetic field, the system possesses localized spatially dependent droplet solutions which, in the low temperature limit, have smaller critical temperature for \eta>0 than the droplet solutions without the interaction term (\eta=0). In the weak magnetic field limit, the opposite behavior is observed: the critical temperature increases as we increase \eta. We also calculate the energy gap in the probe limit and find that it is larger for \eta<0 than the energy gap in the conventional case (\eta=0).
Cite
@article{arxiv.1303.2575,
title = {Building a Holographic Superconductor with Higher-derivative Couplings},
author = {Xiao-Mei Kuang and Eleftherios Papantonopoulos and George Siopsis and Bin Wang},
journal= {arXiv preprint arXiv:1303.2575},
year = {2013}
}
Comments
14 pages, 6 figures, 2 tables, motivation of introducing higher-derivative couplings explained, references added, published version