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Subleading Collinear Limits of Yang-Mills Amplitudes from Gravity

Jin Dong, Stephan Stieberger

Source record

Source: arXiv

Published: Aug 31, 2026

arXiv: 2609.00153

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Source abstract

We show that the subleading collinear sector of Yang-Mills (YM) amplitudes is controlled by ordinary Einstein-Yang-Mills (EYM) amplitudes and their higher-derivative corrections. The complete set of strict subleading collinear limits associated with an equal-helicity collinear pair can be extracted from open-closed string disk amplitudes. The latter generate 12(n3)!\frac12 (n-3)! BCJ-like relations with non-linear kinematic coefficients, reducing the (n3)!(n-3)! collinear data to a basis of dimension 12(n3)!\frac12 (n-3)!. This reduced basis can be represented by gravitational amplitudes in EYM theories and by their higher-derivative open-string corrections. At multiplicity nn this gravitational basis consists of the (n4)!(n-4)! independent EYM subamplitudes together with 12(n5)(n4)!\frac12 (n-5)(n-4)! higher-order corrections involving one graviton and n2n-2 gluons. The resulting decomposition is governed by unsigned Stirling numbers of the first kind: the ordinary EYM amplitudes correspond to the sector [n31]\left[{n-3\atop 1}\right], the higher-order BCJ-like relations to even sectors [n32j]\left[{n-3\atop 2j}\right], and the higher-derivative EYM corrections to odd sectors [n32j+1]\left[{n-3\atop 2j+1}\right] with j1j\geq 1.

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