English

O(d+1,d+1) enhanced double field theory

High Energy Physics - Theory 2017-10-18 v2

Abstract

Double field theory yields a formulation of the low-energy effective action of bosonic string theory and half-maximal supergravities that is covariant under the T-duality group O(d,d)(d,d) emerging on a torus TdT^d. Upon reduction to three spacetime dimensions and dualisation of vector fields into scalars, the symmetry group is enhanced to O(d+1,d+1)(d+1,d+1). We construct an enhanced double field theory with internal coordinates in the adjoint representation of O(d+1,d+1)(d+1,d+1). Its section constraints admit two inequivalent solutions, encoding in particular the embedding of D=6D=6 chiral and non-chiral theories, respectively. As an application we define consistent generalized Scherk-Schwarz reductions using a novel notion of generalized parallelization. This allows us to prove the consistency of the truncations of D=6D=6, N=(1,1){\cal N}=(1,1) and D=6D=6, N=(2,0){\cal N}=(2,0) supergravity on AdS3×S3_3\times \mathbb{S}^3.

Keywords

Cite

@article{arxiv.1707.06693,
  title  = {O(d+1,d+1) enhanced double field theory},
  author = {Olaf Hohm and Edvard T. Musaev and Henning Samtleben},
  journal= {arXiv preprint arXiv:1707.06693},
  year   = {2017}
}

Comments

33 pages plus Appendix

R2 v1 2026-06-22T20:53:24.432Z