English

Holographic duals of 6d RG flows

High Energy Physics - Theory 2019-03-27 v1

Abstract

A notable class of superconformal theories (SCFTs) in six dimensions is parameterized by an integer NN, an ADE group GG, and two nilpotent elements μL,R\mu_\mathrm{L,R} in GG. Nilpotent elements have a natural partial ordering, which has been conjectured to coincide with the hierarchy of renormalization-group flows among the SCFTs. In this paper we test this conjecture for G=SU(k)G=\mathrm{SU}(k), where AdS7_7 duals exist in IIA. We work with a seven-dimensional gauged supergravity, consisting of the gravity multiplet and two SU(k)\mathrm{SU}(k) non-Abelian vector multiplets. We show that this theory has many supersymmetric AdS7_7 vacua, determined by two nilpotent elements, which are naturally interpreted as IIA AdS7_7 solutions. The BPS equations for domain walls connecting two such vacua can be solved analytically, up to a Nahm equation with certain boundary conditions. The latter admit a solution connecting two vacua if and only if the corresponding nilpotent elements are related by the natural partial ordering, in agreement with the field theory conjecture.

Keywords

Cite

@article{arxiv.1810.10013,
  title  = {Holographic duals of 6d RG flows},
  author = {G. Bruno De Luca and Alessandra Gnecchi and Gabriele Lo Monaco and Alessandro Tomasiello},
  journal= {arXiv preprint arXiv:1810.10013},
  year   = {2019}
}

Comments

33 pages, 2 figures