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Prescriptive Unitarity for Non-Planar Six-Particle Amplitudes at Two Loops

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arxiv 1909.09131 v3 pith:KPCIAFR3 submitted 2019-09-19 hep-th

Prescriptive Unitarity for Non-Planar Six-Particle Amplitudes at Two Loops

classification hep-th
keywords amplitudesbasisintegrandintegrand-levelprescriptiveresultssingularitiessix-particle
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We extend the applications of prescriptive unitarity beyond the planar limit to provide local, polylogarithmic, integrand-level representations of six-particle MHV scattering amplitudes in both maximally supersymmetric Yang-Mills theory and gravity. The integrand basis we construct is diagonalized on a spanning set of non-vanishing leading singularities that ensures the manifest matching of all soft-collinear singularities in both theories. As a consequence, this integrand basis naturally splits into infrared-finite and infrared-divergent parts, with hints toward an integrand-level exponentiation of infrared divergences. Importantly, we use the same basis of integrands for both theories, so that the presence or absence of residues at infinite loop momentum becomes a feature detectable by inspecting the cuts of the theory. Complete details of our results are provided as ancillary files. This work has been updated to take into account the results of [arXiv:1911.09106], which leads to a simpler and more uniform representation of these amplitudes.

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  1. Planar loop integrands from cuts in $D$ dimensions

    hep-th 2026-06 unverdicted novelty 6.0

    A Möbius-inversion formula on the refinement poset reconstructs planar L-loop n-point integrands as sums over non-scaleless scalar graphs dressed by D-dimensional cuts, demonstrated for Yang-Mills theory.