Double Field Theory description of Heterotic gauge symmetry enhancing-breaking
arXiv:1708.07148 · doi:10.1007/JHEP10(2017)046
Abstract
A Double Field Theory (DFT) description of gauge symmetry enhancing-breaking in the heterotic string is presented. The construction, based on previous results for the bosonic string, relies on the extension of the tangent frame of DFT. The fluxes of a Scherk-Schwarz like generalized toroidal compactification are moduli dependent and become identified with the structure constants of the enhanced group at fixed "self-dual" points in moduli space. Slight displacements from such points provide the breaking of the symmetry, gauge bosons acquiring masses proportional to fluxes. The inclusion of fermions is also discussed.
28 pages
References in corpus (8)
- Double Field Theory
- Lectures on Gauged Supergravity and Flux Compactifications
- Gauged Double Field Theory
- Duality orbits of non-geometric fluxes
- Gauged N=4 supergravities
- Heterotic Effective Action and Duality Symmetries Revisited
- Heterotic '-corrections in Double Field Theory
- U-dual fluxes and Generalized Geometry