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Testing and improving the numerical accuracy of the NLO predictions

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Publication:548994
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DOI10.1016/j.cpc.2010.09.013zbMath1219.81248arXiv1006.3773OpenAlexW2055274290MaRDI QIDQ548994

Roberto Pittau

Publication date: 30 June 2011

Published in: Computer Physics Communications (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/1006.3773

zbMATH Keywords

QCDNLOelectroweak correctionsgeneralized unitarityOPP


Mathematics Subject Classification ID

Strong interaction, including quantum chromodynamics (81V05) Computational methods for problems pertaining to quantum theory (81-08)


Related Items

Automation of one-loop QCD computations, Tensorial reconstruction at the integrand level, Feynman rules for the rational part of the electroweak 1-loop amplitudes in the \(R_{\xi }\) gauge and in the unitary gauge


Uses Software

  • ARPREC
  • CutTools
  • BlackHat


Cites Work

  • Generalized unitarity and one-loop amplitudes in \(\mathcal N=1\) super-Yang-Mills
  • Reduction schemes for one-loop tensor integrals
  • Reducing full one-loop amplitudes to scalar integrals at the integrand level
  • Masses, fermions and generalized D-dimensional unitarity
  • One-loop \(n\)-point gauge theory amplitudes, unitarity and collinear limits.
  • A Fortran 90-based multiprecision system
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