M
Mikolaj Misiak
Researcher at University of Warsaw
Publications - 73
Citations - 7046
Mikolaj Misiak is an academic researcher from University of Warsaw. The author has contributed to research in topics: Quantum chromodynamics & Branching fraction. The author has an hindex of 36, co-authored 71 publications receiving 6299 citations. Previous affiliations of Mikolaj Misiak include CERN & University of Zurich.
Papers
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Journal ArticleDOI
B(s,d)→ℓ(+)ℓ(-) in the standard model with reduced theoretical uncertainty.
Christoph Bobeth,Martin Gorbahn,Thomas Hermann,Mikolaj Misiak,Emmanuel Stamou,Matthias Steinhauser +5 more
TL;DR: Inclusion of the new corrections removes major theoretical uncertainties of perturbative origin that have just begun to dominate over the parametric ones in the standard model.
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Weak radiative B-meson decay beyond leading logarithms
TL;DR: In this paper, the authors obtained a practically complete next-to-leading order prediction for the branching ratio B(B→Xsγ) = (3.28 ± 0.33) × 10−4.
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Updated Next-to-Next-to-Leading-Order QCD Predictions for the Weak Radiative B-Meson Decays.
Mikolaj Misiak,Hrachia M. Asatrian,Radja Boughezal,Michal Czakon,T. Ewerth,Andrea Ferroglia,Andrea Ferroglia,Paul Fiedler,Paolo Gambino,Christoph Greub,Ulrich Haisch,Ulrich Haisch,Tobias Huber,M. Kamiński,Giovanni Ossola,Giovanni Ossola,M. Poradziński,M. Poradziński,Abdur Rehman,Thomas Schutzmeier,Matthias Steinhauser,Javier Virto +21 more
TL;DR: An update of standard model predictions for the inclusive branching ratios of the B mesons is presented, incorporating all results for the O(α_{s}^{2}) and lower-order perturbative corrections that have been calculated after 2006.
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Weak Radiative B-Meson Decay Beyond Leading Logarithms
TL;DR: In this article, the authors obtained a practically complete next-to-leading order prediction for the branching ratio in QCD, which is more than twice smaller than in the previously available leading order theoretical result.
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Quark mass effects in B -> Xs gamma
Paolo Gambino,Mikolaj Misiak +1 more
TL;DR: In this paper, the authors show that the charm-loop contribution to B -> Xs gamma is numerically dominant and very stable under logarithmic QCD corrections, mainly due to the b-quark mass evolution in the top quark sector.