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Two--Loop Anomalous Dimension Matrix for $\Delta S=1$ Weak Non-Leptonic Decays II: ${\cal O}(\alpha_e \alpha_s)$

High Energy Physics - Phenomenology 2009-10-22 v1

Abstract

We calculate the 10×1010\times 10 two--loop anomalous dimension matrix to order \ord(αeαs)\ord(\alpha_e \alpha_s) in the dimensional regularization scheme with anticommuting γ5\gamma_5 (NDR) which is necessary for the extension of the ΔS=1\Delta S=1 weak Hamiltonian involving electroweak penguins beyond the leading logarithmic approximation. We demonstrate, how a direct calculation of penguin diagrams involving γ5\gamma_5 in closed fermion loops can be avoided thus allowing a consistent calculation of two--loop anomalous dimensions in the simplest renormalization scheme with anticommuting γ5\gamma_5 in DD dimensions. We give the necessary one--loop finite terms which allow to obtain the corresponding two--loop anomalous dimension matrix in the HV scheme with non--anticommuting γ5\gamma_5.

Keywords

Cite

@article{arxiv.hep-ph/9211321,
  title  = {Two--Loop Anomalous Dimension Matrix for $\Delta S=1$ Weak Non-Leptonic Decays II: ${\cal O}(\alpha_e \alpha_s)$},
  author = {Andrzej J. Buras and Matthias Jamin and Markus E. Lautenbacher},
  journal= {arXiv preprint arXiv:hep-ph/9211321},
  year   = {2009}
}

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25 pages