paper

Light Moduli in Almost No-Scale Models

arXiv:0909.0482 · doi:10.1016/j.nuclphysb.2009.10.024

Abstract

We discuss the stabilization of the compact dimension for a class of five-dimensional orbifold supergravity models. Supersymmetry is broken by the superpotential on a boundary. Classically, the size of the fifth dimension is undetermined, with or without supersymmetry breaking, and the effective potential is of no-scale type. The size is fixed by quantum corrections to the Kähler potential, the Casimir energy and Fayet-Iliopoulos (FI) terms localized at the boundaries. For an FI scale of order , as in heterotic string compactifications with anomalous $\U1$ symmetries, one obtains . A small mass is predicted for the scalar fluctuation associated with the fifth dimension, .

16 pages, 5 figures