English

The S Matrix of 6D Super Yang-Mills and Maximal Supergravity from Rational Maps

High Energy Physics - Theory 2018-10-03 v2

Abstract

We present new formulas for nn-particle tree-level scattering amplitudes of six-dimensional N=(1,1)\mathcal{N}=(1,1) super Yang-Mills (SYM) and N=(2,2)\mathcal{N}=(2,2) supergravity (SUGRA). They are written as integrals over the moduli space of certain rational maps localized on the (n3)!(n-3)! solutions of the scattering equations. Due to the properties of spinor-helicity variables in six dimensions, the even-nn and odd-nn formulas are quite different and have to be treated separately. We first propose a manifestly supersymmetric expression for the even-nn amplitudes of N=(1,1)\mathcal{N}=(1,1) SYM theory and perform various consistency checks. By considering soft-gluon limits of the even-nn amplitudes, we deduce the form of the rational maps and the integrand for nn odd. The odd-nn formulas obtained in this way have a new redundancy that is intertwined with the usual SL(2,C)\text{SL}(2, \mathbb{C}) invariance on the Riemann sphere. We also propose an alternative form of the formulas, analogous to the Witten-RSV formulation, and explore its relationship with the symplectic (or Lagrangian) Grassmannian. Since the amplitudes are formulated in a way that manifests double-copy properties, formulas for the six-dimensional N=(2,2)\mathcal{N}=(2,2) SUGRA amplitudes follow. These six-dimensional results allow us to deduce new formulas for five-dimensional SYM and SUGRA amplitudes, as well as massive amplitudes of four-dimensional N=4\mathcal{N}=4 SYM on the Coulomb branch.

Keywords

Cite

@article{arxiv.1805.11111,
  title  = {The S Matrix of 6D Super Yang-Mills and Maximal Supergravity from Rational Maps},
  author = {Freddy Cachazo and Alfredo Guevara and Matthew Heydeman and Sebastian Mizera and John H. Schwarz and Congkao Wen},
  journal= {arXiv preprint arXiv:1805.11111},
  year   = {2018}
}

Comments

71+23 pages. v2: minor corrections, references added, matches published JHEP version