Half-maximal supersymmetry from exceptional field theory
Abstract
We study -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 and 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 structures, where , and 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 half-maximal warped and Minkowski 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 double field theory with a -dimensional extended space. Its section condition has one solution corresponding to 10-dimensional supergravity and another yielding six-dimensional SUGRA.
Keywords
Cite
@article{arxiv.1707.00714,
title = {Half-maximal supersymmetry from exceptional field theory},
author = {Emanuel Malek},
journal= {arXiv preprint arXiv:1707.00714},
year = {2017}
}
Comments
105 pages; v2: Added a section proving consistency of truncation at the level of the equations of motion, and some references; v3: Published version, minor typos corrected