Gravitons, Bose-symmetry, and Bonus-scaling
Abstract
Modern on-shell S-matrix methods may dramatically improve our understanding of perturbative quantum gravity, but current foundations of on-shell techniques for General Relativity still rely on off-shell Feynman diagram analysis. Here, we complete the fully on-shell proof of Ref.~\cite{ST} that the recursion relations of Britto, Cachazo, Feng, and Witten (BCFW) apply to General Relativity tree amplitudes. We do so by showing that the surprising requirement of "bonus" scaling under a BCFW shift directly follows from Bose-symmetry. Moreover, we show that amplitudes in generic theories subjected to BCFW deformations of identical particles necessarily scale as . When applied to the color ordered expansions of Yang-Mills, this directly implies the improved behavior under non-adjacent gluon shifts. Using the same analysis, three-dimensional gravity amplitudes scale as , compared to the behavior for conformal Chern-Simons matter theory.
Keywords
Cite
@article{arxiv.1408.5125,
title = {Gravitons, Bose-symmetry, and Bonus-scaling},
author = {David A. McGady and Laurentiu Rodina},
journal= {arXiv preprint arXiv:1408.5125},
year = {2015}
}
Comments
6 pages