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Dual conformal symmetry at loop level; massive regularization

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arxiv 1103.1016 v1 pith:TEZHRA5B submitted 2011-03-05 hep-th hep-ph

classification hep-thhep-ph
keywords symmetrylevelconformalloopdualamplitudesforminfrared
verification ladder T0 review T1 audit T2 compute T3 formal

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Dual conformal symmetry has had a huge impact on our understanding of planar scattering amplitudes in N=4 super Yang-Mills. At tree level, it combines with the original conformal symmetry generators to a Yangian algebra, a hallmark of integrability, and helps in determining the tree-level amplitudes. The latter are now known in closed form. At loop level, it determines the functional form of the four- and five-point scattering amplitudes to all orders in the coupling constant, and gives restrictions at six points and beyond. The symmetry is best understood at loop level in terms of a novel AdS-inspired infrared regularization which makes the symmetry exact, despite the infrared divergences. This has important consequences for the basis of loop integrals in this theory. Recently, a number of selective reviews have appeared which discuss dual conformal symmetry, mostly at tree level. Here, we give an up-to-date account of dual conformal symmetry, focussing on its status at loop level.

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  1. Symplectic Grassmannian description of the Coulomb branch three and four point amplitudes

    hep-th 2025-05 conditional novelty 6.0 of 10

    Three- and four-point Coulomb branch amplitudes of N=4 SYM are expressed as symplectic Grassmannian integrals over SpGr(3,6) and SpGr(4,8), up to a fitted kinematic factor at four points.

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