Open access
Date
2023-11Type
- Journal Article
Abstract
We present a new computer program, feyntrop, which uses the tropical geometric approach to evaluate Feynman integrals numerically. In order to apply this approach in the physical regime, we introduce a new parametric representation of Feynman integrals that implements the causal iε prescription concretely while retaining projective invariance. feyntrop can efficiently evaluate dimensionally regulated, quasi-finite Feynman integrals, with not too exceptional kinematics in the physical regime, with a relatively large number of propagators and with arbitrarily many kinematic scales. We give a systematic classification of all relevant kinematic regimes, review the necessary mathematical details of the tropical Monte Carlo approach, give fast algorithms to evaluate (deformed) Feynman integrands, describe the usage of feyntrop and discuss many explicit examples of evaluated Feynman integrals. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000634663Publication status
publishedExternal links
Journal / series
Computer Physics CommunicationsVolume
Pages / Article No.
Publisher
ElsevierSubject
Feynman integrals; Monte Carlo integration; Tropical geometry; Epsilon-expansion; Contour deformation; Causal i-epsilon prescriptionMore
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