English

Holographic Dual of QCD from Black D5 Branes

High Energy Physics - Theory 2009-10-07 v2

Abstract

We study the dynamics of probe D7 D7\overline{\rm D7} flavor probe branes in the background of near extremal D5 branes. This model is a holographic dual to a gauge theory with spontaneous breaking of a U(Nf)L×U(Nf)RU(N_f)_L\times U(N_f)_R chiral symmetry. The spectrum of two such D7 D7\overline{\rm D7} embeddings, contains a single massive 4D meson coming from the world volume U(1) gauge field, the pion, and a single massive 4D scalar meson coming from fluctuations of the embedding of the brane. In addition, there are continuum five dimensional states due to the finite height of the effective potential in the radial direction. We investigate baryons in this model, and find that the size is stabilized due to the Chern-Simons term in the D7 world volume action. The model admits a Hagedorn temperature of 12πR\frac{1}{2\pi R} where RR is the radius parameter in the D5 branes metric. We investigate the pattern of chiral symmetry breaking in the deconfined phase as a function of the asymptotic separation of the branes LL. We find that for π3R<L1.068R\frac{\pi}{3}R<L\lessapprox 1.068 R that chiral symmetry is restored, and that chiral symmetry is broken for LL outside this window. We further argue that the solutions with L<π3L<\frac{\pi}{3} are only classically stable, and in fact no D7 embedding exists with these boundary conditions.

Keywords

Cite

@article{arxiv.0903.0628,
  title  = {Holographic Dual of QCD from Black D5 Branes},
  author = {Benjamin A. Burrington and Jacob Sonnenschein},
  journal= {arXiv preprint arXiv:0903.0628},
  year   = {2009}
}

Comments

37 pages, 9 figures