English

Higher curvature Bianchi identities, generalised geometry and $L_{\infty}$ algebras

High Energy Physics - Theory 2019-11-06 v3 Differential Geometry

Abstract

The Bianchi identities for bosonic fluxes in supergravity can receive higher derivative quantum and string corrections, the most well known being that of Heterotic theory dH=14α(tr F2tr R2)d H = \tfrac{1}{4}\alpha'(\text{tr } F^2 - \text{tr } R^2). Less studied are the modifications at order R4R^4 that may arise, for example, in the Bianchi identity for the seven-form flux of M theory compactifications. We argue that such corrections appear to be incompatible with the exceptional generalised geometry description of the lower order supergravity, and seem to imply a gauge algebra for the bosonic potentials that cannot be written in terms of an (exceptional) Courant bracket. However, we show that this algebra retains the form of an LL_{\infty} gauge field theory, which terminates at a level ten multibracket for the case involving just the seven-form flux.

Keywords

Cite

@article{arxiv.1907.09501,
  title  = {Higher curvature Bianchi identities, generalised geometry and $L_{\infty}$ algebras},
  author = {André Coimbra},
  journal= {arXiv preprint arXiv:1907.09501},
  year   = {2019}
}