Noncompact gauging of N=2 7D supergravity and AdS/CFT holography
Abstract
Half-maximal gauged supergravity in seven dimensions coupled to vector multiplets contains vectors and scalars parametrized by coset manifold. The two-form field in the gravity multiplet can be dualized to a three-form field which admits a topological mass term. Possible non-compact gauge groups take the form of with a compact group . is one of the five possibilities; , , , and . We investigate all of these possible non-compact gauge groups and classify their vacua. Unlike the gauged supergravity without a topological mass term, there are new supersymmetric vacua in the and gaugings. These correspond to new superconformal field theories (SCFT) in six dimensions. Additionally, we find a class of and backgrounds with and symmetries. These should correspond to SCFTs in four dimensions obtained from twisted compactifications of six-dimensional field theories on or . We also study RG flows from six-dimensional SCFT to SCFT in four dimensions and RG flows from a four-dimensional SCFT to a six-dimensional SYM in the IR. The former are driven by a vacuum expectation value of a dimension-four operator dual to the supergravity dilaton while the latter are driven by vacuum expectation values of marginal operators.
Keywords
Cite
@article{arxiv.1411.4542,
title = {Noncompact gauging of N=2 7D supergravity and AdS/CFT holography},
author = {Parinya Karndumri},
journal= {arXiv preprint arXiv:1411.4542},
year = {2015}
}
Comments
24 pages, 2 figures, typos corrected and a reference added