English

QCD Scattering Amplitudes and Prescriptive Unitarity

High Energy Physics - Theory 2026-02-04 v1 High Energy Physics - Phenomenology

Abstract

We present a systematic framework for the maximally-transcendental part of planar QCD scattering amplitudes and perform the first bootstrap computation of six-gluon MHV amplitudes in massless QCD at the symbol level. By analyzing the maximal weight projection of amplitudes at the integrand level, we relate their maximally-transcendental parts to prescriptive unitarity integrals. This reveals a novel analytic structure: the prefactors multiplying the functions of maximal transcendentality are identified with the four-dimensional leading singularities of the theory. As a consequence, these prefactors admit a complete classification and can be computed using on-shell diagrams, a formalism originally developed in N=4\mathcal{N}{=}4 super Yang-Mills theory. As a concrete application, we determine the two-loop prefactors for planar MHV gluon amplitudes at arbitrary multiplicity. Combining these prefactors with recent advances in the planar two-loop six-point function space and explicit six-point prescriptive-unitarity input, we construct a complete symbol ansatz and uniquely fix the maximally-transcendental part of the two-loop six-gluon MHV QCD amplitudes by imposing physical constraints. The resulting symbols are expressible in a reduced 137-letter alphabet, suggesting that this alphabet is complete for two-loop six-point massless MHV scattering. We also discuss the implications for multi-collinear splitting and multi-soft functions.

Keywords

Cite

@article{arxiv.2602.02783,
  title  = {QCD Scattering Amplitudes and Prescriptive Unitarity},
  author = {Sérgio Carrôlo and Dmitry Chicherin and Johannes Henn and Qinglin Yang and Yang Zhang},
  journal= {arXiv preprint arXiv:2602.02783},
  year   = {2026}
}

Comments

68 pages, 10 figures

R2 v1 2026-07-01T09:32:59.557Z