English

Type II origin of dyonic gaugings

High Energy Physics - Theory 2017-04-05 v2

Abstract

Dyonic gaugings of four-dimensional supergravity typically exhibit a richer vacuum structure compared to their purely electric counterparts, but their higher-dimensional origin often remains more mysterious. We consider a class of dyonic gaugings with gauge groups of the type (SO(p,q)xSO(p',q'))N\ltimes N with NN nilpotent. Using generalized Scherk-Schwarz reductions of exceptional field theory, we show how these four-dimensional gaugings may be consistently embedded in Type II supergravity upon compactification around products of spheres and hyperboloids. As an application, we give the explicit uplift of the N=4 AdS4_4 vacuum of the theory with gauge group (SO(6)xSO(1,1))T12\ltimes T^{12} into a supersymmetric AdS4_4xM5M_5xS1S^1 S-fold solution of IIB supergravity. The internal space M5M_5 is a squashed S5S^5 preserving an SO(4) \subset SO(6) subset of its isometries.

Keywords

Cite

@article{arxiv.1612.05123,
  title  = {Type II origin of dyonic gaugings},
  author = {Gianluca Inverso and Henning Samtleben and Mario Trigiante},
  journal= {arXiv preprint arXiv:1612.05123},
  year   = {2017}
}

Comments

32 pages, v2: new appendix on relation to N=4 Janus solutions, version to appear in PRD