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The exceptional generalised geometry of supersymmetric AdS flux backgrounds

High Energy Physics - Theory 2017-02-01 v1

Abstract

We analyse generic AdS flux backgrounds preserving eight supercharges in D=4D=4 and D=5D=5 dimensions using exceptional generalised geometry. We show that they are described by a pair of globally defined, generalised structures, identical to those that appear for flat flux backgrounds but with different integrability conditions. We give a number of explicit examples of such "exceptional Sasaki-Einstein" backgrounds in type IIB supergravity and M-theory. In particular, we give the complete analysis of the generic AdS5_5 M-theory backgrounds. We also briefly discuss the structure of the moduli space of solutions. In all cases, one structure defines a "generalised Reeb vector" that generates a Killing symmetry of the background corresponding to the R-symmetry of the dual field theory, and in addition encodes the generic contact structures that appear in the D=4D=4 M-theory and D=5D=5 type IIB cases. Finally, we investigate the relation between generalised structures and quantities in the dual field theory, showing that the central charge and R-charge of BPS wrapped-brane states are both encoded by the generalised Reeb vector, as well as discussing how volume minimisation (the dual of aa- and F\mathcal{F}-maximisation) is encoded.

Keywords

Cite

@article{arxiv.1602.02158,
  title  = {The exceptional generalised geometry of supersymmetric AdS flux backgrounds},
  author = {Anthony Ashmore and Michela Petrini and Daniel Waldram},
  journal= {arXiv preprint arXiv:1602.02158},
  year   = {2017}
}

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40 pages