Hidden Simplicity of the Gravity Action
Abstract
We derive new representations of the Einstein-Hilbert action in which graviton perturbation theory is immensely simplified. To accomplish this, we recast the Einstein-Hilbert action as a theory of purely cubic interactions among gravitons and a single auxiliary field. The corresponding equations of motion are the Einstein field equations rewritten as two coupled first-order differential equations. Since all Feynman diagrams are cubic, we are able to derive new off-shell recursion relations for tree-level graviton scattering amplitudes. With a judicious choice of gauge fixing, we then construct an especially compact form for the Einstein-Hilbert action in which all graviton interactions are simply proportional to the graviton kinetic term. Our results apply to graviton perturbations about an arbitrary curved background spacetime.
Keywords
Cite
@article{arxiv.1705.00626,
title = {Hidden Simplicity of the Gravity Action},
author = {Clifford Cheung and Grant N. Remmen},
journal= {arXiv preprint arXiv:1705.00626},
year = {2017}
}
Comments
20 pages, 1 figure