On the U(1)-invariant sector of dyonic maximal supergravity
arXiv:1801.01286 · doi:10.3938/jkps.73.249
Abstract
Recently a new maximally supersymmetric, dyonically gauged supergravity in four-dimenions has been constructed. This theory admits several supersymmetric AdS solutions, and a Chern- Simons-matter dual theory has been proposed for a solution with an unbroken SU(3) symmetry. The gravity side and the field theory side of the free energy computation show nice agreements at superconformal point. With a view to a study of non-conformal deformations, in this paper we study a consistent truncation of the full theory where SU(3) is broken to U(1). We elucidate the geometry of the scalar sector, and also present the superpotentials in both and supergravity formulation.
v2: 22 pages, refs added
References in corpus (9)
- N=6 superconformal Chern-Simons-matter theories, M2-branes and their gravity duals
- The maximal D=4 supergravities
- AdS_4/CFT_3 -- Squashed, Stretched and Warped
- Supergravity Instabilities of Non-Supersymmetric Quantum Critical Points
- Holographic microstate counting for AdS black holes in massive IIA supergravity
- Symplectic Deformations of Gauged Maximal Supergravity
- Spectrum universality properties of holographic Chern-Simons theories
- Penrose limits and spin chains in the GJV/CS-SYM duality
- Hypermultiplet gaugings and supersymmetric solutions from 11D and massive IIA supergravity on H spaces