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SecDec is a program which can be used for the factorization of dimensionally regulated poles from parametric integrals, in particular multi-loop integrals, and the subsequent numerical evaluation of the finite coefficients.
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Z. Nagy and D. E. Soper, Numerical integration of one-loop Feynman diagrams for N-photon amplitudes
2006
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T. Gehrmann, G. Heinrich, T. Huber, and C. Studerus, Master integrals for massless three-loop form factors: One- loop and two-loop insertions
2006
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A. Lazopoulos, K. Melnikov, and F. Petriello, QCD corrections to tri-boson production
2007
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C. Anastasiou, S. Beerli, S. Bucherer, A. Daleo, and Z. Kunszt, Two-loop amplitudes and master integrals for the production of a Higgs boson via a massive quark and a scalar-quark loop
2007
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C. Anastasiou, S. Beerli, and A. Daleo, Evaluating multi-loop Feynman diagrams with infrared and threshold singularities numerically
2007
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P. Gonnet, Increasing the reliability of adaptive quadrature using explicit interpolants
2010
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J. Carter and G. Heinrich, SecDec: A general program for sector decomposition
2011
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2011
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A. Smirnov, V. Smirnov, and M. Tentyukov, FIESTA 2: Parallelizeable multiloop numerical calculations
2011
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S. Agrawal, T. Hahn, and E. Mirabella, FormCalc 7
2012
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2012
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2013
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S. Borowka and G. Heinrich, Massive non-planar two-loop four-point integrals with SecDec 2.1
2013
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2014
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E. Panzer, On hyperlogarithms and Feynman integrals with divergences and many scales
2014
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A. V. Smirnov, FIRE5: a C++ implementation of Feynman Integral REduction
2014
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2014
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2014
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2015
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