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Half‐Maximal Supersymmetry from Exceptional Field Theory
Abstract:We study urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0001‐dimensional half‐maximal flux backgrounds using exceptional field theory. We define the relevant generalised structures and also find the integrability conditions which give warped half‐maximal MinkowskiD and AdSD vacua. We then show how to obtain consistent truncations of type II / 11‐dimensional SUGRA which break half the supersymmetry. Such truncations can be defined on backgrounds admitting exceptional generalised urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0002 structures, where urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0003, and N is the number of vector multiplets obtained in the lower‐dimensional theory. Our procedure yields the most general embedding tensors satisfying the linear constraint of half‐maximal gauged SUGRA. We use this to prove that all urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0004 half‐maximal warped AdSD and MinkowskiD vacua of type II / 11‐dimensional SUGRA admit a consistent truncation keeping only the gravitational supermultiplet. We also show to obtain heterotic double field theory from exceptional field theory and comment on the M‐theory / heterotic duality. In five dimensions, we find a new SO(5, N ) double field theory with a urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0005‐dimensional extended space. Its section condition has one solution corresponding to 10‐dimensional urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0006 supergravity and another yielding six‐dimensional urn:x-wiley:00158208:media:prop201700061:prop201700061-math-0007 SUGRA.
Keywords:String duality  Flux compactifications  Exceptional field theory  Supergravity models  Generalised geometry
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