Graded transcendental functions: an application to four-point amplitudes with one off-shell leg

Fuente: arXiv
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Main Authors: Gehrmann, Thomas, Henn, Johannes, Jakubčík, Petr, Lim, Jungwon, Mella, Cesare Carlo, Syrrakos, Nikolaos, Tancredi, Lorenzo, Bobadilla, William J. Torres
Format: Preprint
Published: 2024
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author Gehrmann, Thomas
Henn, Johannes
Jakubčík, Petr
Lim, Jungwon
Mella, Cesare Carlo
Syrrakos, Nikolaos
Tancredi, Lorenzo
Bobadilla, William J. Torres
author_facet Gehrmann, Thomas
Henn, Johannes
Jakubčík, Petr
Lim, Jungwon
Mella, Cesare Carlo
Syrrakos, Nikolaos
Tancredi, Lorenzo
Bobadilla, William J. Torres
contents Several recent works have demonstrated the powerful algebraic simplifications that can be achieved for scattering amplitudes through a systematic grading of transcendental quantities. We develop these concepts to construct a minimal basis of functions tailored to a scattering amplitude in a general way. Starting with formal solutions for all master integral topologies, we organise the appearing functions by properties such as their symbol alphabet or letter adjacency. We rotate the basis such that functions with spurious features appear in the least possible number of basis elements. Since their coefficients must vanish for physical quantities, this approach avoids complex cancellations. As a first application, we evaluate all integral topologies relevant to the three-loop $Hggg$ and $Hgq\bar{q}$ amplitudes in the leading-colour approximation and heavy-top limit. We describe the derivation of canonical differential equation systems and present a method for fixing boundary conditions without the need for a full functional representation. Using multiple numerical reductions, we test the maximal transcendentality conjecture for $Hggg$ and identify a new letter which appears in functions of weight 4 and 5. In addition, we provide the first direct analytic computation of a three-point form factor of the operator $\mathrm{Tr}(ϕ^2)$ in planar $\mathcal{N}=4$ sYM and find agreement with numerical and bootstrapped results.
format Preprint
id arxiv_https___arxiv_org_abs_2410_19088
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Graded transcendental functions: an application to four-point amplitudes with one off-shell leg
Gehrmann, Thomas
Henn, Johannes
Jakubčík, Petr
Lim, Jungwon
Mella, Cesare Carlo
Syrrakos, Nikolaos
Tancredi, Lorenzo
Bobadilla, William J. Torres
High Energy Physics - Theory
High Energy Physics - Phenomenology
Several recent works have demonstrated the powerful algebraic simplifications that can be achieved for scattering amplitudes through a systematic grading of transcendental quantities. We develop these concepts to construct a minimal basis of functions tailored to a scattering amplitude in a general way. Starting with formal solutions for all master integral topologies, we organise the appearing functions by properties such as their symbol alphabet or letter adjacency. We rotate the basis such that functions with spurious features appear in the least possible number of basis elements. Since their coefficients must vanish for physical quantities, this approach avoids complex cancellations. As a first application, we evaluate all integral topologies relevant to the three-loop $Hggg$ and $Hgq\bar{q}$ amplitudes in the leading-colour approximation and heavy-top limit. We describe the derivation of canonical differential equation systems and present a method for fixing boundary conditions without the need for a full functional representation. Using multiple numerical reductions, we test the maximal transcendentality conjecture for $Hggg$ and identify a new letter which appears in functions of weight 4 and 5. In addition, we provide the first direct analytic computation of a three-point form factor of the operator $\mathrm{Tr}(ϕ^2)$ in planar $\mathcal{N}=4$ sYM and find agreement with numerical and bootstrapped results.
title Graded transcendental functions: an application to four-point amplitudes with one off-shell leg
topic High Energy Physics - Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2410.19088