Evaluation of Feynman integrals with arbitrary complex masses via series expansions
arXiv:2205.03345 · doi:10.1016/j.cpc.2022.108545
Abstract
We present an algorithm to evaluate multiloop Feynman integrals with an arbitrary number of internal massive lines, with the masses being in general complex-valued, and its implementation in the \textsc{Mathematica} package \textsc{SeaSyde}. The implementation solves by series expansions the system of differential equations satisfied by the Master Integrals. At variance with respect to other existing codes, the analytical continuation of the solution is performed in the complex plane associated to each kinematical invariant. We present the results of the evaluation of the Master Integrals relevant for the NNLO QCD-EW corrections to the neutral-current Drell-Yan processes.
23 pages, 6 figures, 2 tables, Version accepted for publication in CPC
References in corpus (12)
- FIRE5: a C++ implementation of Feynman Integral REduction
- Lectures on differential equations for Feynman integrals
- Feynman Diagrams and Differential Equations
- Tops from Light Quarks: Full Mass Dependence at Two-Loops in QCD
- Collider Physics at the Precision Frontier
- The kite integral to all orders in terms of elliptic polylogarithms
- On the Generalized Harmonic Polylogarithms of One Complex Variable
- The Two Loop Crossed Ladder Vertex Diagram with Two Massive Exchanges
- Numerical evaluation of iterated integrals related to elliptic Feynman integrals
- Targeting Multi-Loop Integrals with Neural Networks
- Massive vector form factors to three loops
- NLO Corrections to Light-Quark Mixed QCD-EW Contributions to Higgs Production
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