<p>Recently, based on the curve-integral formulation for stringy Tr<i>ϕ</i><sup>3</sup> amplitudes, a combinatorial formulation for Yang-Mills amplitudes has been proposed which describes gluons using pairs of scalars and produces the <i>n</i>-gluon amplitude from simple kinematical shift of stringy Tr<i>ϕ</i><sup>3</sup> amplitudes with 2<i>n</i> scalars. It has revealed a variety of new properties and structures even for tree-level gluon amplitudes such as hidden zeros and splits, and in this note we provide another example: we study differential operators acting on Yang-Mills amplitudes with respect to 2<i>n</i>-scalar kinematic variables, which convert such scalar-scaffolded gluons into scalars. In particular, we find (<i>n</i> − 1)-fold differential operators (using 2<i>n</i>-scalar variables) that turn the <i>n</i>-gluon amplitude into a single planar <i>ϕ</i><sup>3</sup> diagram; we then generalize such operators to those that convert <i>n</i> gluons to mixed amplitudes with <i>r</i> scalars and <i>n</i> − <i>r</i> gluons (the latter can be viewed as insertions on <i>ϕ</i><sup>3</sup> diagrams). We also show that the number of linearly independent mixed amplitudes with <i>r</i> scalars and <i>n</i> − <i>r</i> gluons is given by the number of <i>ϕ</i><sup>3</sup> diagrams, the Catalan number 𝒞<sub><i>r</i>−2</sub>, which can be viewed as a generalization of the “uniqueness” theorem of gluon amplitudes (with <i>r</i> = 0). Finally, our construction leads to a planar version of the universal expansion of Yang-Mills amplitudes into a sum of gauge-invariant prefactors built from nested commutators, each accompanied by a mixed amplitude in the natural basis. This formulation significantly reduces the redundancy present in the original expansion.</p>

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On differential operators for scalar-scaffolded gluons

  • Jin Dong,
  • Yong-Xiang Su,
  • Dongyu Yang

摘要

Recently, based on the curve-integral formulation for stringy Trϕ3 amplitudes, a combinatorial formulation for Yang-Mills amplitudes has been proposed which describes gluons using pairs of scalars and produces the n-gluon amplitude from simple kinematical shift of stringy Trϕ3 amplitudes with 2n scalars. It has revealed a variety of new properties and structures even for tree-level gluon amplitudes such as hidden zeros and splits, and in this note we provide another example: we study differential operators acting on Yang-Mills amplitudes with respect to 2n-scalar kinematic variables, which convert such scalar-scaffolded gluons into scalars. In particular, we find (n − 1)-fold differential operators (using 2n-scalar variables) that turn the n-gluon amplitude into a single planar ϕ3 diagram; we then generalize such operators to those that convert n gluons to mixed amplitudes with r scalars and nr gluons (the latter can be viewed as insertions on ϕ3 diagrams). We also show that the number of linearly independent mixed amplitudes with r scalars and nr gluons is given by the number of ϕ3 diagrams, the Catalan number 𝒞r−2, which can be viewed as a generalization of the “uniqueness” theorem of gluon amplitudes (with r = 0). Finally, our construction leads to a planar version of the universal expansion of Yang-Mills amplitudes into a sum of gauge-invariant prefactors built from nested commutators, each accompanied by a mixed amplitude in the natural basis. This formulation significantly reduces the redundancy present in the original expansion.