Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1842587 | Nuclear Physics B | 2007 | 62 Pages |
Abstract
We consider two-loop leading and next-to-leading logarithmic virtual corrections to arbitrary processes with external massless fermions in the electroweak Standard Model at energies well above the electroweak scale. Using the sector-decomposition method and alternatively the strategy of regions we calculate the mass singularities that arise as logarithms of Q2/MW2, where Q is the energy scale of the considered process, and 1/ε poles in D=4â2ε dimensions, to one- and two-loop next-to-leading logarithmic accuracy. The derivations are performed within the complete electroweak theory with spontaneous symmetry breaking. Our results indicate a close analogy between the form of two-loop electroweak logarithmic corrections and the singular structure of scattering amplitudes in massless QCD. We find agreement with the resummation prescriptions that have been proposed in the literature based on a symmetric SU(2)ÃU(1) theory matched with QED at the electroweak scale and provide new next-to-leading contributions proportional to ln(MZ2/MW2).
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
A. Denner, B. Jantzen, S. Pozzorini,