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An Improved Determination of the Fermi Coupling Constant, GF

1999/02/05 by Robin G. Stuart, Stuart, Robin G.
Physics and Astronomy · #FOS: Physical sciences #High Energy Physics - Phenomenology (hep-ph) #hep-ph

paper · pdf · doi:10.48550/arxiv.hep-ph/9902257

9 pages, RevTeX, uses amsmath.sty and axodraw.sty. Talk presented at DPF 99, UCLA, Los Angeles, USA, 5-9 January, 1999

arxiv created 1999/05/18 · arxiv updated 2009/11/30

Abstract

Over 40 years after the calculation of the 1-loop QED corrections to the muon lifetime, new theoretical developments have made it possible to obtain an analytic expression for the complete 2-loop QED contributions in the Fermi theory. The exact result for the effects of virtual and real photons, virtual electrons, muons and hadrons as well as e+e- pair creation is Delta Gamma^(2)=Gamma0(alpha/pi)2[(156815/5184)-(1036/27)zeta(2) -(895/36)zeta(3)+(67/8)zeta(4) +53zeta(2)ln(2)-(0.042+/-0.002)] where Gamma0 is the tree-level width. This eliminates the theoretical error in the extracted value of the Fermi coupling constant, GF, which was previously the source of the dominant uncertainty. The new value is GF=(1.16637 +/- 0.00001) x 10-5 GeV-2 The overall error has been roughly halved and is now entirely experimental. Several experiments are planned for the next generation of muon lifetime measurements and these can proceed unhindered by theoretical uncertainties.

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