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Superconductivity from gauge/gravity duality with flavor

Ammon, Martin and Erdmenger, Johanna and Kaminski, Matthias and Kerner, Patrick

Keywords

AdS/CFT correspondence

Abstract

We consider thermal strongly-coupled N=2 SYM theory with fundamental matter at finite isospin chemical potential. Using gauge/gravity duality, i.e. a probe of two flavor D7-branes embedded in the AdS black hole background, we find a critical temperature at which the system undergoes a second order phase transition. The critical exponent of this transition is one half and coincides with the result from mean field theory. In the thermodynamically favored phase, a flavor current acquires a vev and breaks an Abelian symmetry spontaneously. This new phase shows signatures known from superconductivity, such as an infinite dc conductivity and a gap in the frequency-dependent conductivity. The gravity setup allows for an explicit identification of the degrees of freedom in the dual field theory, as well as for a dual string picture of the condensation process.

Information

Published
2009 as article
Phys. Lett., B680 - page(s): 516-520
Contact
Prof. Dr. Johanna Erdmenger
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
A, D
e-Print
0810.2316

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