English

Topological Holography: The Example of The D2-D4 Brane System

High Energy Physics - Theory 2020-08-12 v4 Quantum Algebra

Abstract

We propose a toy model for holographic duality. The model is constructed by embedding a stack of NN D2-branes and KK D4-branes (with one dimensional intersection) in a 6D topological string theory. The world-volume theory on the D2-branes (resp. D4-branes) is 2D BF theory (resp. 4D Chern-Simons theory) with GLN\mathrm{GL}_N (resp. GLK\mathrm{GL}_K) gauge group. We propose that in the large NN limit the BF theory on R2\mathbb{R}^2 is dual to the closed string theory on R2×R+×S3\mathbb R^2 \times \mathbb R_+ \times S^3 with the Chern-Simons defect on R×R+×S2\mathbb R \times \mathbb R_+ \times S^2. As a check for the duality we compute the operator algebra in the BF theory, along the D2-D4 intersection -- the algebra is the Yangian of glK\mathfrak{gl}_K. We then compute the same algebra, in the guise of a scattering algebra, using Witten diagrams in the Chern-Simons theory. Our computations of the algebras are exact (valid at all loops). Finally, we propose a physical string theory construction of this duality using a D3-D5 brane configuration in type IIB -- using supersymmetric twist and Ω\Omega-deformation.

Keywords

Cite

@article{arxiv.1809.00372,
  title  = {Topological Holography: The Example of The D2-D4 Brane System},
  author = {Nafiz Ishtiaque and Seyed Faroogh Moosavian and Yehao Zhou},
  journal= {arXiv preprint arXiv:1809.00372},
  year   = {2020}
}

Comments

v4: Minor revision based on reviewer's report. Submission to SciPost