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Isospin diffusion in thermal AdS/CFT with flavor

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arxiv 0704.1290 v2 pith:LKAR6H26 submitted 2007-04-10 hep-th hep-phnucl-th

classification hep-thhep-phnucl-th
keywords isospinfieldchemicalflavorgaugepotentialtheorybrane
verification ladder T0 review T1 audit T2 compute T3 formal
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We study the gauge/gravity dual of a finite temperature field theory at finite isospin chemical potential by considering a probe of two coincident D7-branes embedded in the AdS-Schwarzschild black hole background. The isospin chemical potential is obtained by giving a vev to the time component of the non-Abelian gauge field on the brane. The fluctuations of the non-Abelian gauge field on the brane are dual to the SU(2) flavor current in the field theory. For the embedding corresponding to vanishing quark mass, we calculate all Green functions corresponding to the components of the flavor current correlator. We discuss the physical properties of these Green functions, which go beyond linear response theory. In particular, we show that the isospin chemical potential leads to a frequency-dependent isospin diffusion coefficient.

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    The mesonic spectrum of a supersymmetric color superconductor contains type II Goldstone modes with quadratic dispersion, a pseudo-Goldstone of mass 2Mq, and extra gapless modes from supersymmetric moduli.

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