Loop-level double-copy for massive fermions in the fundamental
A bstract We find that unitarity cuts and the duality between color and kinematics are sufficient constraints to bootstrap D -dimensional QCD scattering amplitudes starting from three-particle tree-level. Specifically, we calculate tree level amplitudes through six-points, as well as the four-point...
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Veröffentlicht in: | The journal of high energy physics 2023-05, Vol.2023 (5), p.217-48, Article 217 |
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Sprache: | eng |
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bstract
We find that unitarity cuts and the duality between color and kinematics are sufficient constraints to bootstrap
D
-dimensional QCD scattering amplitudes starting from three-particle tree-level. Specifically, we calculate tree level amplitudes through six-points, as well as the four-point one-loop correction for massive fermions in the fundamental representation of the gauge group — constructing a color-dual representation of the latter for the first time. To do so we clarify a prescription for functional kinematic ansatze involving fermionic matter. The advantages of color-dual calculation, familiar from particles in the adjoint, also apply here: only a small number of basis topologies must be constrained via physical information of the theory, and algebraic relations propagate this to a full solution. As all the QCD amplitudes we construct here are color-dual, they trivially generate
D
-dimensional amplitudes in gravitational theories via double-copy construction. |
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ISSN: | 1029-8479 1029-8479 |
DOI: | 10.1007/JHEP05(2023)217 |