Published June 2012 | Version v1
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Nonperturbative QCD corrections to electroweak observables

  • 1. Thomas Jefferson National Accelerator Facility, Newport News, VA (United States)
  • 2. High Energy Accelerator Research Organization (KEK), Tsukuba, Ibaraki (Japan)
  • 3. Deutsches Elektronen-Synchrotron (DESY), Zeuthen (Germany)
  • 4. The Cyprus Institute, Nicosia (Cyprus)

Description

Nonperturbative QCD corrections are important to many low-energy electroweak observables, for example the muon magnetic moment. However, hadronic corrections also play a significant role at much higher energies due to their impact on the running of standard model parameters, such as the electromagnetic coupling. Currently, these hadronic contributions are accounted for by a combination of experimental measurements, effective field theory techniques and phenomenological modeling but ideally should be calculated from first principles. Recent developments indicate that many of the most important hadronic corrections may be feasibly calculated using lattice QCD methods. To illustrate this, we examine the lattice computation of the leading-order QCD corrections to the muon magnetic moment, paying particular attention to a recently developed method but also reviewing the results from other calculations. We then continue with several examples that demonstrate the potential impact of the new approach: the leading-order corrections to the electron and tau magnetic moments, the running of the electromagnetic coupling, and a class of the next-to-leading-order corrections for the muon magnetic moment. Along the way, we mention applications to the Adler function, which can be used to determine the strong coupling constant, and QCD corrections to muonic-hydrogen.

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Additional details

Publishing Information

Imprint Pagination
14 p.
ISSN
0418-9833
Report number
DESY--11-197

Conference

Title
Lattice 2011. 29. international symposium on lattice field theory
Dates
10-16 Jul 2011
Place
Squaw Valley, CA (United States)