English

Five-dimensional spinor helicity for all masses and spins

High Energy Physics - Theory 2024-05-16 v1

Abstract

We develop a spinor helicity formalism for five-dimensional scattering amplitudes of any mass and spin configuration. While five-dimensional spinor helicity variables have been previously studied in the context of N=2,4 supersymmetric Yang-Mills scattering amplitudes with spin less than two arXiv:2202.08257, we propose an alternative viewpoint that stems from d-dimensional spinor helicity variables avoiding the use of the exceptional low-dimensional isomorphism SO(4,1)USp(2,2)SO(4,1) \cong USp(2,2) and the decomposition of a massive momentum into the sum of two massless momenta. By enumerating all possible independent little group tensors, we systematically build the full space of five-dimensional three-point tree-level scattering amplitudes for any configuration of spins and masses. Furthermore, we provide a prescription for computing the high energy limit of scattering amplitudes written in our spinor helicity variables. We also expect that our formalism will be applicable to effective field theories with higher spin, in particular, the scattering of highly spinning black holes in five dimensions.

Keywords

Cite

@article{arxiv.2405.09533,
  title  = {Five-dimensional spinor helicity for all masses and spins},
  author = {Andrzej Pokraka and Smita Rajan and Lecheng Ren and Anastasia Volovich and W. Wayne Zhao},
  journal= {arXiv preprint arXiv:2405.09533},
  year   = {2024}
}

Comments

29 pages, 3 figures

R2 v1 2026-06-28T16:28:31.934Z