English

Holography for 2d $\mathcal{N}=(0,4)$ quantum field theory

High Energy Physics - Theory 2021-04-21 v4

Abstract

We study the correspondence between AdS3_3 massive IIA supergravity vacua and two-dimensional N=(0,4)\mathcal{N}=(0,4) quiver quantum field theories. After categorizing all kinds of gravity solutions, we demystify the ones that seem to reflect anomalous gauge theories. In particular, we prove that there are bound states of D-branes on the boundary of the space which provide the dual quiver theory with exactly the correct amount of flavor symmetry in order to cancel its gauge anomalies. Then we propose that the structure of the field theory should be complemented with additional bifundamental matter, which we argue may only be N=(4,4)\mathcal{N}=(4,4) hypermultiplets. Finally, we construct a BPS string configuration and we use the old and new supersymmetric matter to build its dual ultraviolet operator. During this holographic synthesis, we uncover some interesting features of the quiver superpotential and associate the proposed operator with the same classical mass of its dual BPS string.

Keywords

Cite

@article{arxiv.2008.00314,
  title  = {Holography for 2d $\mathcal{N}=(0,4)$ quantum field theory},
  author = {Kostas Filippas},
  journal= {arXiv preprint arXiv:2008.00314},
  year   = {2021}
}

Comments

43 pages, many figures; typos corrected, comments added, section 5 corrected/enhanced

R2 v1 2026-06-23T17:34:35.196Z