Flavour-kinematics duality for Goldstone modes
Abstract
Three scalar effective field theories have special properties in terms of non-linear symmetries, soft limits and on-shell constructability that arise from their Goldstone nature: the non-linear -model, multi-DBI theory and the special Galileon. We discuss how these theories are related via flavour-kinematics duality, analogous to the colour-kinematics duality between gravity and gauge theories. At the off-shell level, we identify a specific mapping between the three theories that is crucially dependent on their non-linear symmetries. Similarly, we demonstrate how the on-shell amplitudes factorise into BCJ numerators describing flavour and a scalar version of kinematics, naturally leading to the inclusion of graviton exchange in the non-linear -model. Finally, we map those numerators onto each other, and comment on a similar relation to tensor kinematics. Our results highlight a common structure that underlies the physics of different Goldstone modes.
Cite
@article{arxiv.2204.11629,
title = {Flavour-kinematics duality for Goldstone modes},
author = {Dijs de Neeling and Diederik Roest and Sam Veldmeijer},
journal= {arXiv preprint arXiv:2204.11629},
year = {2022}
}
Comments
22 pages, 4 figures; typos corrected, references added