Interacting spin-2 fields in the Stueckelberg picture
Abstract
We revisit and extend the `Effective field theory for massive gravitons' constructed by Arkani-Hamed, Georgi and Schwartz in the light of recent progress in constructing ghost-free theories with multiple interacting spin-2 fields. We show that there exist several dual ways of restoring gauge invariance in such multi-gravity theories, find a generalised Fierz-Pauli tuning condition relevant in this context and highlight subtleties in demixing tensor and scalar modes. The generic multi-gravity feature of scalar mixing and its consequences for higher order interactions are discussed. In particular we show how the decoupling limit is qualitatively changed in theories of interacting spin-2 fields. We relate this to dRGT (de Rham, Gabadadze, Tolley) massive gravity, Hassan-Rosen bigravity and the multi-gravity constructions by Hinterbichler and Rosen. As an additional application we show that EBI (Eddington-Born-Infeld) bigravity and higher order generalisations thereof possess ghost-like instabilities.
Cite
@article{arxiv.1311.7009,
title = {Interacting spin-2 fields in the Stueckelberg picture},
author = {Johannes Noller and James H. C. Scargill and Pedro G. Ferreira},
journal= {arXiv preprint arXiv:1311.7009},
year = {2014}
}
Comments
64 pages, 9 figures, v2: references added