Pseudo-Goldstones from Supersymmetric Wilson Lines on 5D Orbifolds
Abstract
We consider a U(1) gauge theory on the five dimensional orbifold , where has even parity. This leads to a light pseudoscalar degree of freedom in the effective 4D theory below the compactification scale arising from a gauge-invariant brane-to-brane Wilson line. As noted by Arkani-Hamed et al in the non-supersymmetric case the 5D bulk gauge-invariance of the underlying theory together with the non-local nature of the Wilson line field leads to the protection of the 4D theory of from possible large global-symmetry violating quantum gravitational effects. We study the theory in detail, in particular developing the supersymmetric generalization of this construction, involving a pseudoscalar Goldstone field (the `axion') and its scalar and fermion superpartners (`saxion' and `axino'). The global nature of implies the absence of independent Kaluza-Klein excitations of its component fields. The non-derivative interactions of the (supersymmetric) Wilson line in the effective 4D theory arising from U(1) charged 5D fields propagating between the boundary branes are studied. We show that, similar to the non-supersymmetric case, these interactions are suppressed by where is the size of the extra dimension.
Cite
@article{arxiv.hep-ph/0503255,
title = {Pseudo-Goldstones from Supersymmetric Wilson Lines on 5D Orbifolds},
author = {Thomas Flacke and Babiker Hassanain and John March-Russell},
journal= {arXiv preprint arXiv:hep-ph/0503255},
year = {2007}
}
Comments
LaTex, 16 pages