English

Gaugings of four-dimensional N=3 supergravity and AdS4/CFT3 holography

High Energy Physics - Theory 2016-06-22 v2

Abstract

We study matter-coupled N=3N=3 gauged supergravity in four dimensions with various semisimple gauge groups. When coupled to nn vector multiplets, the gauged supergravity contains 3+n3+n vector fields and 3n3n complex scalars parametrized by SU(3,n)/SU(3)×SU(n)×U(1)SU(3,n)/SU(3)\times SU(n)\times U(1) coset manifold. Semisimple gauge groups take the form of G0×HSO(3,n)SU(3,n)G_0\times H\subset SO(3,n)\subset SU(3,n) with HH being a compact subgroup of SO(n+3dim(G0))SO(n+3-\textrm{dim}(G_0)). The G0G_0 groups considered in this paper are of the form SO(3)SO(3), SO(3,1)SO(3,1), SO(2,2)SO(2,2), SL(3,R)SL(3,\mathbb{R}) and SO(2,1)×SO(2,2)SO(2,1)\times SO(2,2). We find that SO(3)×SO(3)SO(3)\times SO(3), SO(3,1)SO(3,1) and SL(3,R)SL(3,\mathbb{R}) gauge groups admit a maximally supersymmetric AdS4AdS_4 critical point. The SO(2,1)×SO(2,2)SO(2,1)\times SO(2,2) gauge group admits a supersymmetric Minkowski vacuum while the remaining gauge groups admit both half-supersymmetric domain wall vacua and AdS4AdS_4 vacua with completely broken supersymmetry. For the SO(3)×SO(3)SO(3)\times SO(3) gauge group, there exists another supersymmetric N=3N=3 AdS4AdS_4 critical point with SO(3)diagSO(3)_{\textrm{diag}} symmetry. We explicitly give a detailed study of various holographic RG flows between AdS4AdS_4 critical points, flows to non-conformal theories and supersymmetric domain walls in each gauge group. The results provide gravity duals of N=3N=3 Chern-Simons-Matter theories in three dimensions.

Keywords

Cite

@article{arxiv.1602.02254,
  title  = {Gaugings of four-dimensional N=3 supergravity and AdS4/CFT3 holography},
  author = {Parinya Karndumri and Khem Upathambhakul},
  journal= {arXiv preprint arXiv:1602.02254},
  year   = {2016}
}

Comments

29 pages, no figures, typos corrected and a few references added