A three-point form factor through five loops

A bstract We bootstrap the three-point form factor of the chiral part of the stress­tensor supermultiplet in planar N = 4 super-Yang-Mills theory, obtaining new results at three, four, and five loops. Our construction employs known conditions on the first, second, and final entries of the symbol, co...

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Veröffentlicht in:The journal of high energy physics 2021-04, Vol.2021 (4), p.1-46, Article 147
Hauptverfasser: Dixon, Lance J., McLeod, Andrew J., Wilhelm, Matthias
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Sprache:eng
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Zusammenfassung:A bstract We bootstrap the three-point form factor of the chiral part of the stress­tensor supermultiplet in planar N = 4 super-Yang-Mills theory, obtaining new results at three, four, and five loops. Our construction employs known conditions on the first, second, and final entries of the symbol, combined with new multiple-final-entry conditions, “extended-Steinmann-like” conditions, and near-collinear data from the recently-developed form factor operator product expansion. Our results are expected to give the maximally transcendental parts of the gg → Hg and H → ggg amplitudes in the heavy-top limit of QCD. At two loops, the extended-Steinmann-like space of functions we describe contains all transcendental functions required for four-point amplitudes with one massive and three massless external legs, and all massless internal lines, including processes such as gg → Hg and γ * → q q ¯ g . We expect the extended-Steinmann-like space to contain these amplitudes at higher loops as well, although not to arbitrarily high loop order. We present evidence that the planar N = 4 three-point form factor can be placed in an even smaller space of functions, with no independent ζ values at weights two and three.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP04(2021)147