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Deriving canonical differential equations for Feynman integrals from a single uniform weight integral
by
Yan, Kai
, Dlapa, Christoph
, Henn, Johannes
in
Algorithms
/ Canonical forms
/ Classical and Quantum Gravitation
/ Differential equations
/ Elementary Particles
/ High energy physics
/ Integrals
/ Kinematics
/ Mathematical analysis
/ NLO Computations
/ Partial differential equations
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ String Theory
/ Transformations (mathematics)
/ Weight
2020
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Deriving canonical differential equations for Feynman integrals from a single uniform weight integral
by
Yan, Kai
, Dlapa, Christoph
, Henn, Johannes
in
Algorithms
/ Canonical forms
/ Classical and Quantum Gravitation
/ Differential equations
/ Elementary Particles
/ High energy physics
/ Integrals
/ Kinematics
/ Mathematical analysis
/ NLO Computations
/ Partial differential equations
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ String Theory
/ Transformations (mathematics)
/ Weight
2020
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Do you wish to request the book?
Deriving canonical differential equations for Feynman integrals from a single uniform weight integral
by
Yan, Kai
, Dlapa, Christoph
, Henn, Johannes
in
Algorithms
/ Canonical forms
/ Classical and Quantum Gravitation
/ Differential equations
/ Elementary Particles
/ High energy physics
/ Integrals
/ Kinematics
/ Mathematical analysis
/ NLO Computations
/ Partial differential equations
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ String Theory
/ Transformations (mathematics)
/ Weight
2020
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Deriving canonical differential equations for Feynman integrals from a single uniform weight integral
Journal Article
Deriving canonical differential equations for Feynman integrals from a single uniform weight integral
2020
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Overview
A
bstract
Differential equations are a powerful tool for evaluating Feynman integrals. Their solution is straightforward if a transformation to a canonical form is found. In this paper, we present an algorithm for finding such a transformation. This novel technique is based on a method due to Höschele et al. and relies only on the knowledge of a single integral of uniform transcendental weight. As a corollary, the algorithm can also be used to test the uniform transcendentality of a given integral. We discuss the application to several cutting-edge examples, including non-planar four-loop HQET and non-planar two-loop five-point integrals. A Mathematica implementation of our algorithm is made available together with this paper.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V,SpringerOpen
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