Scattering amplitudes from unitarity-based reduction algorithm at the integrand-level

samurai is a tool for the automated numerical evaluation of one-loop corrections to any scattering amplitudes within the dimensional-regularization scheme. It is based on the decomposition of the integrand according to the OPP -approach, extended to accommodate an implementation of the generalized d...

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Veröffentlicht in:The journal of high energy physics 2010-08, Vol.2010 (8), Article 80
Hauptverfasser: Mastrolia, P., Ossola, G., Reiter, T., Tramontano, F.
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Sprache:eng
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Zusammenfassung:samurai is a tool for the automated numerical evaluation of one-loop corrections to any scattering amplitudes within the dimensional-regularization scheme. It is based on the decomposition of the integrand according to the OPP -approach, extended to accommodate an implementation of the generalized d -dimensional unitarity-cuts technique, and uses a polynomial interpolation exploiting the Discrete Fourier Transform. samurai can process integrands written either as numerator of Feynman diagrams or as product of tree-level amplitudes. We discuss some applications, among which the 6-and 8-photon scattering in QED, and the 6-quark scattering in QCD. samurai has been implemented as a Fortran90 library, publicly available, and it could be a useful module for the systematic evaluation of the virtual corrections oriented towards automating next-to-leading order calculations relevant for the LHC phenomenology.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP08(2010)080