English

Holography of Charged Dilaton Black Holes

High Energy Physics - Theory 2010-12-21 v4 Strongly Correlated Electrons General Relativity and Quantum Cosmology

Abstract

We study charged dilaton black branes in AdS4AdS_4. Our system involves a dilaton ϕ\phi coupled to a Maxwell field FμνF_{\mu\nu} with dilaton-dependent gauge coupling, 1g2=f2(ϕ){1\over g^2} = f^2(\phi). First, we find the solutions for extremal and near extremal branes through a combination of analytical and numerical techniques. The near horizon geometries in the simplest cases, where f(ϕ)=eαϕf(\phi) = e^{\alpha\phi}, are Lifshitz-like, with a dynamical exponent zz determined by α\alpha. The black hole thermodynamics varies in an interesting way with α\alpha, but in all cases the entropy is vanishing and the specific heat is positive for the near extremal solutions. We then compute conductivity in these backgrounds. We find that somewhat surprisingly, the AC conductivity vanishes like ω2\omega^2 at T=0 independent of α\alpha. We also explore the charged black brane physics of several other classes of gauge-coupling functions f(ϕ)f(\phi). In addition to possible applications in AdS/CMT, the extremal black branes are of interest from the point of view of the attractor mechanism. The near horizon geometries for these branes are universal, independent of the asymptotic values of the moduli, and describe generic classes of endpoints for attractor flows which are different from AdS2×R2AdS_2\times R^2.

Keywords

Cite

@article{arxiv.0911.3586,
  title  = {Holography of Charged Dilaton Black Holes},
  author = {Kevin Goldstein and Shamit Kachru and Shiroman Prakash and Sandip P. Trivedi},
  journal= {arXiv preprint arXiv:0911.3586},
  year   = {2010}
}

Comments

33 pages, 3 figures, LaTex; v2, references added; v3, more refs added; v4, refs added, minor corrections