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Reduction of Feynman Integrals in the Parametric Representation II: Reduction of Tensor Integrals

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arxiv 1912.08606 v5 pith:GZIHW6KP submitted 2019-12-10 hep-ph

classification hep-ph
keywords integralsparametrictensormethodreducedreductionequationsfeynman
verification ladder T0 review T1 audit T2 compute T3 formal
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In a recent paper by the author (Chen in JHEP 02:115, 2020), the reduction of Feynman integrals in the parametric representation was considered. Tensor integrals were directly parametrized by using a generator method. The resulting parametric integrals were reduced by constructing and solving parametric integration-by-parts (IBP) identities. In this paper, we furthermore show that polynomial equations for the operators that generate tensor integrals can be derived. Based on these equations, two methods to reduce tensor integrals are developed. In the first method, by introducing some auxiliary parameters, tensor integrals are parametrized without shifting the spacetime dimension. The resulting parametric integrals can be reduced by using the standard IBP method. In the second method, tensor integrals are (partially) reduced by using the technique of Gr\"obner basis combined with the application of symbolic rules. The unreduced integrals can further be reduced by solving parametric IBP identities.

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Cited by 3 Pith papers

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