M
Michal Czakon
Researcher at RWTH Aachen University
Publications - 222
Citations - 16843
Michal Czakon is an academic researcher from RWTH Aachen University. The author has contributed to research in topics: Quantum chromodynamics & Top quark. The author has an hindex of 58, co-authored 207 publications receiving 14768 citations. Previous affiliations of Michal Czakon include Karlsruhe Institute of Technology & University of Silesia in Katowice.
Papers
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NNLO QCD predictions for fully-differential top-quark pair production at the Tevatron
TL;DR: In this article, a comprehensive study of differential distributions for Tevatron top-pair events at the level of stable top quarks is presented, where all calculations are performed in NNLO QCD with the help of a fully differential partonic Monte Carlo and are exact at this order in perturbation theory.
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Bosonic corrections to Delta r at the two loop level
M. Awramik,M. Awramik,Michal Czakon,Michal Czakon,A.I. Onishchenko,A.I. Onishchenko,O. L. Veretin +6 more
TL;DR: In this paper, the details of two recent calculations of the two-loop bosonic corrections to the muon lifetime in the standard model are presented, and the matching to the Fermi theory is discussed.
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Pinning down the large-x gluon with NNLO top-quark pair differential distributions
TL;DR: In this paper, the impact on the large-x gluon of top-quark pair differential distributions measured by ATLAS and CMS at the LHC has been investigated in the NNPDF3.0 framework at NNLO accuracy.
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The singular behavior of one-loop massive QCD amplitudes with one external soft gluon
TL;DR: The last missing process independent ingredient needed for numerical evaluation of observables with massive fermions at hadron colliders at the next-to-next-to leading order was derived in this article.
Journal ArticleDOI
NNLO QCD predictions for fully-differential top-quark pair production at the Tevatron
TL;DR: In this article, a comprehensive study of differential distributions for Tevatron top-pair events at the level of stable top quarks is presented, where all calculations are performed in NNLO QCD with the help of a fully differential partonic Monte Carlo and are exact at this order in perturbation theory.