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Algorithm FIRE -- Feynman Integral REduction

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arxiv 0807.3243 v3 pith:UTWGK2QN submitted 2008-07-21 hep-ph

Algorithm FIRE -- Feynman Integral REduction

classification hep-ph
keywords algorithmfeynmanfireintegralsreductionapplyingcalculationscomplicated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The recently developed algorithm FIRE performs the reduction of Feynman integrals to master integrals. It is based on a number of strategies, such as applying the Laporta algorithm, the s-bases algorithm, region-bases and integrating explicitly over loop momenta when possible. Currently it is being used in complicated three-loop calculations.

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Cited by 13 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

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    Machine learning discovers a tube-seeding strategy for IBP reduction of Feynman integrals that scales linearly with numerator power, demonstrated on rank-20 2-loop 5-point integrals.

  2. Compact Syzygies for Feynman Integrals from Landau Singularities

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    Syzygy solutions for IBP reduction are systematically constructed as maximal minors of certificate matrices derived from the leading Landau singularities of Feynman diagrams.

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    Inconsistency in spanning cuts for IBP reductions arises because cuts can make hidden terms in IBP relations finite via pinch singularities that cancel vanishing parameters, linked to hidden linear relations between p...

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