A ten-dimensional action for non-geometric fluxes
Abstract
The NSNS Lagrangian of ten-dimensional supergravity is rewritten via a change of field variables inspired by Generalized Complex Geometry. We obtain a new metric and dilaton, together with an antisymmetric bivector field which leads to a ten-dimensional version of the non-geometric Q-flux. Given the involved global aspects of non-geometric situations, we prescribe to use this new Lagrangian, whose associated action is well-defined in some examples investigated here. This allows us to perform a standard dimensional reduction and to recover the usual contribution of the Q-flux to the four-dimensional scalar potential. An extension of this work to include the R-flux is discussed. The paper also contains a brief review on non-geometry.
Keywords
Cite
@article{arxiv.1106.4015,
title = {A ten-dimensional action for non-geometric fluxes},
author = {David Andriot and Magdalena Larfors and Dieter Lust and Peter Patalong},
journal= {arXiv preprint arXiv:1106.4015},
year = {2015}
}
Comments
47 pages; v2: minor modifications, references added, version to be published in JHEP