English

Geometric Couplings and Brane Supersymmetry Breaking

High Energy Physics - Theory 2009-11-07 v2

Abstract

Orientifold vacua allow the simultaneous presence of supersymmetric bulks, with one or more gravitinos, and non-supersymmetric combinations of BPS branes. This ``brane supersymmetry breaking'' raises the issue of consistency for the resulting gravitino couplings, and Dudas and Mourad recently provided convincing arguments to this effect for the ten-dimensional USp(32)USp(32) model. These rely on a non-linear realization of local supersymmetry {\it \`a la} Volkov-Akulov, although no gravitino mass term is present, and the couplings have a nice geometrical interpretation in terms of ``dressed'' bulk fields, aside from a Wess-Zumino-like term, resulting from the supersymmetrization of the Chern-Simons couplings. Here we show that {\it all} couplings can be given a geometrical interpretation, albeit in the dual 6-form model, whose bulk includes a Wess-Zumino term, so that the non-geometric ones are in fact demanded by the geometrization of their duals. We also determine the low-energy couplings for six-dimensional (1,0) models with brane supersymmetry breaking. Since these include both Chern-Simons and Wess-Zumino terms, only the resulting field equations are geometrical, aside from contributions due to vectors of supersymmetric sectors.

Keywords

Cite

@article{arxiv.hep-th/0107090,
  title  = {Geometric Couplings and Brane Supersymmetry Breaking},
  author = {Gianfranco Pradisi and Fabio Riccioni},
  journal= {arXiv preprint arXiv:hep-th/0107090},
  year   = {2009}
}

Comments

LaTeX file, 36 pages. One reference added. Final version to appear in Nucl. Phys. B

R2 v1 2026-07-22T15:05:19.105Z