English

Holographic description of D3-branes in flat space

High Energy Physics - Theory 2016-08-25 v1

Abstract

We describe a scheme for constructing the holographic dual of the full D3-brane geometry with charge KK by embedding it into a large anti-de Sitter space of size NN. Such a geometry is realized in a multi-center anti-de Sitter geometry which admits a simple field theory interpretation as SU(N+K)SU(N+K) gauge theory broken to SU(N)×SU(K)SU(N) \times SU(K). We find that the characteristic size of the D3-brane geometry is of order (K/N)1/4U0(K/N)^{1/4} U^0 where U0U^0 is the scale of the Higgs. By choosing NN to be much larger than KK, the scale of the D3-brane metric can be well separated from the Higgs scale in the radial coordinate. We generalize the holographic energy-distance relation and estimate the characteristic energy scale associated with these radial scales, and find that the E/UE/U relation becomes effectively UU independent in the range (K/N)1/2U0<U<U0(K/N)^{1/2} U^0 < U < U^0. This implies that all detailed structure of the D3-brane geometry is encoded in the fine structure of the boundary gauge theory at around the Higgs scale.

Keywords

Cite

@article{arxiv.hep-th/9903227,
  title  = {Holographic description of D3-branes in flat space},
  author = {Akikazu Hashimoto},
  journal= {arXiv preprint arXiv:hep-th/9903227},
  year   = {2016}
}

Comments

8 pages, 1 eps figure